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GreenDIGIT Deliverable D10.3 Dissemination and Exploitation Report about Period 1, and Plan for Period 2

Chounos, Kostas; Demchenko, Yuri; Ilager, Shashikant; Teixeira de Pinho Ferreira, Gonçalo; Holzinger, Kilian; Gallenmüller, Sebastian; Condurache, Catalin; Rowlandson, Damla; Vaissade, Frederic; Guegain, Edouard; sitera, Jiří; López García, Álvaro; Lehto

Abstract

This deliverable includes the dissemination and exploitation activities of the GreenDIGIT project for the first reporting period (M1–M18), as well as the strategy and the plans for the second period (M19–M36). More specifically, it describes the ways, and the actions made, to establish strong visibility, engagement to a broad range of stakeholders, and key outputs delivery, that also form the basis for future adoption. Some of the most notable achievements described, include the successful engagement with numerous Research Infrastructures (RIs) and the continuous intense awareness raising of the targeted stakeholders. The dissemination efforts were supported by a dynamic online presence (website, social media channels etc.), active participation in events (publications, posters etc.), and strong community engagement. Exploitation activities in this period focused on preparing the Key Exploitable Results (KERs). The KERs, include a wide variety of material ranging from technical tools, environmental impact methodologies, training resources, and are thoroughly described in this document. Furthermore, the strategy for the second period shifts from broad awareness to targeted exploitation, ensuring that project outputs are embedded within RI operations and training programs. Some indicative actions for achieving that, will include pilot deployments, integration of technical solutions in operational environments, expansion of training modules, and alignment with policy and evaluation frameworks. Through these efforts, GreenDIGIT will maximise its impact, contributing to the sustainability and environmental performance of European RIs, and ensuring the long-term relevance and adoption of its results. [This deliverable is pending approval from the European Commission]

Full text

Disclaimer: “Funded by the European Union. Views and opinions expressed are however those of the author(s) only and do not necessarily reflect those of the European Union. Neither the European Union nor the granting authority can be held responsible for them.” Greener Future Digital Research Infrastructures Deliverable D10.3 Dissemination and Exploitation Report about Period 1, and Plan for Period 2 GRANT AGREEMENT NUMBER: 101131207 Lead Beneficiary: UTH Type of Deliverable: Report Dissemination Level: Public Submission Date: 31.08.2025 Version: 1.0 Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 2 of 71 Versioning and contribution history Version Description Contributions 0.1 Initial draft – ToC - Contributions UTH, 0.2 Contributions (chapters 1 & 2) / Change template UTH 0.3 Contributions (chapters 3 & 4) UTH 0.4 Partner Inputs / Adjusting content Part II UTH, EGI, UvA, TUM, GSPT, SU, CESNET, CSIC, MI, CNRS, CNR, EBRAINS 0.5 Adjustments of partner Inputs / Completing 1st full version UTH 0.6 Integration of internal review inputs UvA, UTH 0.7 Refining / removing some parts of content UTH 0.8 Integrating / applying last IR comments UTH, UvA 1.0 Finalising for submission UvA Authors Author Partner Kostas Chounos UTH Yuri Demchenko UvA Shashikant Ilager UvA Gonçalo Teixeira de Pinho Ferreira UvA Kilian Holzinger TUM Sebastian Gallenmüller TUM Catalin Condurache EGI Damla Rowlandson EGI Frederic Vaissade SU Edouard Guegain GREENSPECTOR Jiří Sitera CESNET Álvaro López García CSIC Iida Lehto MI Jérôme Pansanel CNRS Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 3 of 71 Andrei Tsaregorodtsev CNRS Roberto Trasarti CNR Camelia Vasile EBRAINS Reviewers Name Organisation Yuri Demchenko UvA Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 4 of 71 Disclaimer The information and views set out in this publication are those of the author(s) and do not necessarily reflect the official opinion of the European Commission. The Commission does not guarantee the accuracy of the data included in this study. Neither the Commission nor any person acting on the Commission’s behalf may be held responsible for the use, which may be made of the information contained therein. Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 5 of 71 Executive Summary This deliverable includes the dissemination and exploitation activities of the GreenDIGIT project for the first reporting period (M1–M18), as well as the strategy and the plans for the second period (M19–M36). More specifically, it describes the ways, and the actions made, to establish strong visibility, engagement to a broad range of stakeholders, and key outputs delivery, that also form the basis for future adoption. Some of the most notable achievements described, include the successful engagement with numerous Research Infrastructures (RIs) and the continuous intense awareness raising of the targeted stakeholders. The dissemination efforts were supported by a dynamic online presence (website, social media channels etc.), active participation in events (publications, posters etc.), and strong community engagement. Exploitation activities in this period focused on preparing the Key Exploitable Results (KERs). The KERs, include a wide variety of material ranging from technical tools, environmental impact methodologies, training resources, and are thoroughly described in this document. Furthermore, the strategy for the second period shifts from broad awareness to targeted exploitation, ensuring that project outputs are embedded within RI operations and training programs. Some indicative actions for achieving that, will include pilot deployments, integration of technical solutions in operational environments, expansion of training modules, and alignment with policy and evaluation frameworks. Through these efforts, GreenDIGIT will maximise its impact, contributing to the sustainability and environmental performance of European RIs, and ensuring the long-term relevance and adoption of its results. Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 6 of 71 Table of contents 1 Introduction ................................................................................................................................... 11 1.1 Purpose of the Deliverable ...................................................................................................... 11 1.2 Structure of the Deliverable..................................................................................................... 11 1.3 Methodologies and Sources .................................................................................................... 11 1.4 Overview of Dissemination and Exploitation Strategy ............................................................ 12 1.4.1 Objectives and principles .................................................................................................. 12 1.4.2 Target audiences and stakeholder groups ........................................................................ 12 1.4.3 Key Performance Indicators (KPIs) .................................................................................... 13 Part I: Dissemination and Exploitation Activities – Period 1 (M1–M18) ............................................... 14 2 Dissemination Activities Performed .............................................................................................. 15 2.1 Scientific Publications (Conferences, Journals, Workshops) ................................................... 15 2.2 Online Visibility (Website, Social Media, Blogs)....................................................................... 18 2.2.1 Website ............................................................................................................................. 19 2.2.2 Social Media ...................................................................................................................... 22 2.3 Events Participation ................................................................................................................. 24 2.3.1 EGI 2025 ............................................................................................................................ 24 2.3.2 EGI 2024 ............................................................................................................................ 29 2.3.3 Dagstuhl Seminar 24462 ................................................................................................... 32 2.3.4 Other ................................................................................................................................. 33 2.4 Contributions to Policy ............................................................................................................. 34 2.4.1 Assessment of existing policies and regulations ............................................................... 34 2.4.2 Development of self-assessment questionnaire .............................................................. 34 2.4.3 Development of the policy recommendations ................................................................. 35 3 Exploitation Activities Performed .................................................................................................. 36 3.1 Stakeholder Engagement ......................................................................................................... 36 3.1.1 Research communities ...................................................................................................... 36 3.1.2 Digital Research Infrastructures (RIs) ............................................................................... 37 3.1.3 Policy makers & Public authorities ................................................................................... 38 3.1.4 Standardisation bodies ..................................................................................................... 39 3.1.5 General public & Civil society ........................................................................................... 40 3.1.6 EOSC community and stakeholders .................................................................................. 40 Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 7 of 71 3.2 Adoption and Innovation Pathways Progress .......................................................................... 41 3.2.1 Green competences and skills definition for RI Environmental sustainability and energy efficiency (UvA) ............................................................................................................................. 42 3.2.2 Set of training courses on environmental sustainability and energy efficiency for RIs (UvA, UTH, ALL) ............................................................................................................................. 42 4 Impact Assessment for Period 1 .................................................................................................... 44 4.1 GreenDIGIT Objective KPIs ....................................................................................................... 44 4.1.1 GreenDIGIT events participants ........................................................................................ 45 4.1.2 Open training materials .................................................................................................... 45 4.1.3 Framework and instructional methodology for Research Infrastructures ....................... 46 4.1.4 Framework and instructional methodology for Research Infrastructures ....................... 46 4.2 KPIs for dissemination and communication ............................................................................ 47 Part II: Dissemination and Exploitation Plan – Period 2 (M19–M36) .................................................... 49 5 Updated Strategy and Key Exploitable Results (KERs) .................................................................. 50 5.1 Strategy Overview for Period 2 ................................................................................................ 50 5.2 Key Exploitable Results (KERs) ................................................................................................. 51 5.2.1 KER1: State of the Art (SotA) and Technology Recommendations ................................... 51 5.2.2 KER2: Architecture Framework for Digital RI Sustainability by Design ............................. 52 5.2.3 KER3: Research Infrastructure Lifecycle Model (RILM) .................................................... 53 5.2.4 KER4: User Tools for Lowering the Environmental Impact ............................................... 53 5.2.5 KER5: Environmental Impact Architecture and RI Prototypes .......................................... 55 5.2.6 KER6: Environmental Impact Assessment Methodology and Self-Assessment Toolkit ... 58 5.2.7 KER7: Training Modules and Competence Framework .................................................... 59 6 Conclusion ..................................................................................................................................... 62 List of figures Figure 1. Indicative screenshots of the GreenDIGIT website. ............................................................... 19 Figure 2. Events page. ........................................................................................................................... 20 Figure 3. News blog page. ..................................................................................................................... 21 Figure 4. Newsletter page. .................................................................................................................... 22 Figure 5. Example LinkedIn posts. ......................................................................................................... 23 Figure 6. Example X posts. ..................................................................................................................... 24 Figure 7. GreenDIGIT booth at EGI 2025. .............................................................................................. 25 Figure 8. GreenDIGIT general flyer at EGI 2025. ................................................................................... 26 Figure 9. GreenDIGIT metrics flyer at EGI 2025. ................................................................................... 26 Figure 10. GreenDIGIT public session at EGI 2025. ............................................................................... 28 Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 8 of 71 Figure 11. GreenDIGIT poster at EGI 2025. ........................................................................................... 29 Figure 12. GreenDIGIT poster at EGI 2024. ........................................................................................... 31 Figure 13. Website Visitors.................................................................................................................... 48 Figure 14. List of Publications. ............................................................................................................... 65 Figure 15. List of Dissemination Activities. ............................................................................................ 66 Figure 16. List of Communication Activities. ......................................................................................... 69 List of tables Table 1.List of Publications .................................................................................................................... 16 Table 2.Innovation Pathways progress first reporting period .............................................................. 42 Table 3.KPIs for dissemination and communication ............................................................................. 47 Table 4. List of Key Exploitable Results (KERs) ...................................................................................... 51 Table 5.List of dissemination logs ......................................................................................................... 64 Table 6. Dissemination Activities Hyperlinks......................................................................................... 67 Table 6. Communication Activities Hyperlinks. ..................................................................................... 70 Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 9 of 71 List of Abbreviations Abbreviation Description ARL Adoption Readiness Level DIRAC Distributed Infrastructure with Remote Agent Control DoA Description of Action CI Carbon Intensity CPU Central Processing Unit CSRD Corporate Sustainability Reporting Directive DB Database FAIR Findable, Accessible, Interoperable, Reusable FDMI Flexible Data Management Infrastructure e-IRG e-Infrastructure Reflection Group EC European Commission EED Energy Efficiency Directive EOSC European Open Science Cloud ESFRI European Strategy Forum on Research Infrastructures EU DC CoC The European Code of Conduct for Data Centres GESA Green and Environmental Sustainability Awareness GPU Graphics Processing Unit GRI Global Reporting Initiative HRP Horizon Results Platform HTP High-Throughput Computing ISO International Organization for Standardization ITU International Telecommunication Union JCR Joint Research Centre JSON JavaScript Object Notation KER Key Exploitable Results KPI Key Performance Indicator LCA Lifecycle Analysis LU Learning Units MEB Management and Executive Briefings PUE Power Usage Effectiveness RI Research Infrastructure RILM Research Infrastructure Lifecycle Model RIOS Research Infrastructure Operations and Services SCI Software Carbon Intensity SDG UN Sustainable Development Goals SDO Standards Development Organization SRIA Strategic Research and Innovation Agenda SSES Software and System Engineering for Sustainability TTFE Time to First Experiment Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 16 of 71 This table below contains the simplified form of publications list from M1 – M18. For brevity's sake the following abbreviations are used: • Conference Publication proceeding/workshop (CPPW) • Article in Journal (AIJ) • Other (O.) Table 1.List of Publications No Publication Title Type Authors 1 Poster “GreenDIGIT: Project and Initiative to Lower Environmental Impact of Digital Infrastructures” (link) CPPW EGI 2 RO-Crate for Testbeds: Automated Packaging of Experimental Results (link) CPPW Eric Hauser, Sebastian Gallenmüller, Georg Carle 3 Poster: „SLICES-DE: A Digital Research Infrastructure for Germany and Europe“ (link) CPPW Christoph Wen, Eric Hauser, Sebastian Gallenmüller, Georg Carle 4 Poster: „Sustainable Digital Research Infrastructures“ (link) CPPW Kilian Holzinger, Johannes Späth, Sebastian Gallenmüller, Georg Carle 5 Presentation and Abstracts “Defining Artificial Intelligence Competences and Knowledge Based on the Job Market Analysis” (link) CPPW UvA 6 IEEE GreenCom-2024 Conf on Green Computing and Communication (link) CPPW UvA 7 Poster: Post-Quantum Secure In-Flight Communication over 6G Networks CPPW Daniel Petri, Kilian Holzinger, Henning Stubbe, Sebastian Gallenmüller, Georg Carle 8 The Importance of System Engineering Competences and Knowledge in Large Scale Digital Research Infrastructure Projects (link) CPPW Yuri Demchenko 9 Energy-Efficient Deployment of Stateful FaaS Vertical Applications on Edge Data Networks (link) CPPW Claudio Cicconetti, Raffaele Bruno, Andrea Passarella 10 AndroWatts: Unpacking the Power Consumption of Mobile Device's Components (link) CPPW Édouard Guégain, Rémy Raes, Noé Chachignot, Clément Quinton, Romain Rouvoy 11 Poster : AndroWatts: Unpacking the Power O. Édouard Guégain, Rémy Raes, Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 17 of 71 Consumption of Mobile Device's Components Noé Chachignot, Clément Quinton, Romain Rouvoy 12 Presentation Greener Future Digital Research Infrastructures (link) CPPW Raffaele Bolla 13 SLICES Security (link) CPPW Sebastian Gallenmüller, Kilian Holzinger, Daniel Petri, Georg Carle 14 Dynamic Resource Allocation and Energy Optimization in 5G O-RAN: Real-World Insights and Testbed Evaluations CPPW Caterina Leonelli, Dimitris Kefalas, Serge Fdida, Paolo Bellavista, Thanasis Korakis 15 Aging-aware CPU Core Management for Embodied Carbon Amortization in Cloud LLM Inference (link) CPPW Tharindu B. Hewage, Shashikant Ilager, Maria Rodriguez Read, and Rajkumar Buyya 16 Generic and ML Workloads in an HPC Data centre (link) O. Xiaoyu Chu, Daniel Hofstätter, Shashikant Ilager, Sacheendra Talluri, Duncan Kampert, Damian Podareanu, Dmitry Duplyakin, Ivona Brandic, Alexandru Iosup 17 A Data-driven Analysis of a Cloud Data Centre: Statistical Characterization of Workload, Energy and Temperature (link) O. Shashikant Ilager, Adel N. Toosi, Mayank Raj Jha, Ivona Brandic, Rajkumar Buyya 18 Scalability and Performance Evaluation of IEEE 802.11ah IoT Deployments: A Testbed Approach (link) CPPW Kostas Chounos, Katerina Kyriakou, Thanasis Korakis 19 Continuous Integration for Networks Supporting Low-Latency Using Hybrid Network Emulation (link) CPPW Florian Wiedner, Dominik Kreutzer, Jonas Andre, Georg Carle 20 TEE Time at P4—Performance Analysis of Trusted Execution Environments for Packet Processing (link) CPPW Manuel Simon, Sebastian Warter, Sebastian Gallenmüller, Georg Carle 21 A methodology for reproducible and portable experiment workflows (link) AIJ Henning Stubbe, Sebastian Gallenmüller, Georg Carle 22 Dynamic Data Planes Updates using Lua and libmoon (link) CPPW Manuel Simon, Sebastian Gallenmüller, Georg Carle 23 im2HW: Modelling Latency Offset Between Network Simulations and Hardware CPPW Johannes Späth, Max Helm, Benedikt Jaeger, Georg Carle Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 18 of 71 Measurements (link) 24 n-the-fly Table Insertions on Programmable Software Data Planes (link) CPPW Manuel Simon, Sebastian Gallenmüller, Georg Carle 25 Applicability of Hardware-Supported Containers in Low-Latency Networking (link) CPPW Alexander Daichendt, Florian Wiedner, Jonas Andre, Georg Carle 26 Honey for the Ice Bear - Dynamic eBPF in P4 (link) CPPW Manuel Simon, Henning Stubbe, Sebastian Gallenmüller, Georg Carle 27 Automated Debugging Mechanisms for Orchestrated Cloud Infrastructures with Active Control and Global Evaluation (link) AIJ J. Kovács, B. Ligetfalvi and R. Lovas 28 Forward Error Correction and Weighted Hierarchical Fair Multiplexing for HTTP/3 over QUIC (link) CPPW Kilian Holzinger, Daniel Petri, Stefan Lachnit, Marcel Kempf, Henning Stubbe, Sebastian Gallenmüller, Stephan Günther, Georg Carle 29 BrowsEm: Model-based Web Site Loading Emulation (link) CPPW Kilian Holzinger, Florian Klein, Daniel Petri, Stefan Lachnit, Sebastian Gallenmüller, Georg Carle Appendix A contains the complete information for the list of publications, dissemination and communication activities recorded for the M1–M18 period from the consortium of GreenDIGIT. Furthermore, Chapters 4.1 and 4.2 describe some objective related KPIs and some targeted KPIs for project dissemination and exploitation activity accordingly. There, a comparison is performed with the target and the number achieved / progress at this stage (M18). 2.2 Online Visibility (Website, Social Media, Blogs) Nowadays, online presence is deemed necessary to widespread effectively the produced results and actions during the project’s execution. Online visibility is a cornerstone dissemination strategy of GreenDIGIT, by providing the project’s progress, access outputs in the stakeholders, and by engaging with the community. This sub-section includes digital presence overview of GreenDIGIT during the first reporting period. Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 19 of 71 2.2.1 Website From M2, the official website of GreenDIGIT 1 has been developed and was operational, in order to provide updates, provide ways for communication, and holistically raise the awareness for performed activities in GreenDIGIT. The website acts as a main communication channel by incorporating: • Clear overview of objectives and structure for GreenDIGIT. • Regular updates on news and events. • Access to public deliverables. • Newsletters. • Information for involved partners and RIs. • Contact forms. Figure 1. Indicative screenshots of the GreenDIGIT website. Except from “static” pages (consortium description, RIs description etc.), large emphasis has been also given on the website, to provide valuable constantly updated information. More specifically, there are several pages described below, that continuously provide updates to the public and summarise the project’s progress at each stage. 1 https://www.greendigit-project.eu Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 20 of 71 2.2.1.1 Events Figure 2. Events page. Initially, the Events page on the GreenDIGIT website serves as a dynamic log of the project’s participation in and organisation of key scientific, technical, and policy-related events. More specifically, the goal of this page is to highlight the consortium’s presence at international conferences, workshops, stakeholder forums, and internal dissemination webinars. Typically, each entry contains event title, date, location, contribution type of GreenDIGIT and a short description. In such a way, the general public and stakeholders can track outreach and engagement efforts in real time. Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 21 of 71 2.2.1.2 News Blog Figure 3. News blog page. Furthermore, the News Blog page is an editorial section of the website dedicated to share stories, updates, innovations and reflections related to the project. Typical posts include insights from Work Package (WP) leaders, summaries of technical achievements, and thought leadership articles on sustainability in digital RIs. An accessible and engaging tone has been followed in those posts, aimed at both technical and non-technical audiences. New entries are continuously published on the website and are cross shared on social media to drive visibility. Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 22 of 71 2.2.1.3 Newsletter Figure 4. Newsletter page. Finally, this page contains bi-annual issues of the GreenDIGIT newsletter, which aim to inform website visitors (general public, researchers and stakeholders). These newsletters are publicly available online and each edition contains major milestones achieved, featured blogs or deliverables, partner highlights, and upcoming activities. This is an important activity as the newsletters coherently provide updates and aim to keep the wider research and policy community informed about the project's impact and encourage ongoing engagement. 2.2.2 Social Media Social media also plays a pivotal role in the followed dissemination strategy and operates in conjunction with the website of GreenDIGIT. Through their systematic use, the reach of GreenDIGIT actions to scientific, policy, and industry audiences has been extended effectively during the first reporting period. In addition to those audiences, of course the broader public has been engaged efficiently as well. During the first reporting period, GreenDIGIT maintained a strong and consistent presence primarily through LinkedIn, followed by X (formerly Twitter), and supported by a YouTube channel for multimedia content. Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 23 of 71 2.2.2.1 LinkedIn The GreenDIGIT LinkedIn page has been the most actively used and strategically prioritised social media platform. Mostly based on its professional user base and relevance to research, digital infrastructure, and policy communities, LinkedIn provided an ideal environment to share: • Updates and milestones. • Event announcements and recaps. • Published blog entries. • Partner achievements and spotlights. Figure 5. Example LinkedIn posts. During M1–M18, the LinkedIn channel achieved, steady growth in followers (Chapter 4.2) with high engagement rates. Cross-promotion of content published on the website (news blog, events, newsletters, deliverables). Finally, this platform also supports and boosts the creation of professional conversations around sustainability in digital RIs, building networks and fostering collaboration opportunities with stakeholders from academia, industry, and public authorities. 2.2.2.2 X (former Twitter) In addition to LinkedIn, GreenDIGIT also maintains an official X account to provide mostly coverage of events enabling real-time visibility. Of course, this channel is also used to inform the broader public about upcoming events and actions, following the “short updates” and simplistic style of this platform. Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 24 of 71 Figure 6. Example X posts. 2.2.2.3 YouTube Finally, to complement written content, a GreenDIGIT YouTube channel is also active, maintained and accessible to broader public. This channel intends to host recorded webinars, presentations, open sessions, tutorials. At the first period of reporting (M1 – M18), this channel has been primarily used to cover videos of presentations given at open sessions correlated to GreenDIGIT. This will be extended to the dissemination of short educational videos / tutorials about the project’s mission and objectives. 2.3 Events Participation Active participation and organisation of events is also a key objective of the followed dissemination strategy. At events, significant opportunities for visibility, stakeholder engagement, and cross-project collaboration are provided. During M1 – M18, GreenDIGIT consortium members contributed to a wide range of important international, European, and national-level events—including conferences, policy forums, workshops, technical expos, and community webinars. This helped GreenDIGIT significantly to showcase results, build partnerships, and align with ongoing initiatives in the domains of sustainability, digital infrastructures, and Open Science. This section provides an overview of the events attended, highlighting the nature of each contribution and their relevance to GreenDIGIT. 2.3.1 EGI 2025 GreenDIGIT had a strong presence at the EGI 2025 Conference 2 , one of the most relevant European events focused on advanced computing, digital RIs, and research on digital services. The conference provided a significant opportunity for GreenDIGIT to engage directly with stakeholders from research communities, infrastructure providers, policy makers working across the European Open Science Cloud (EOSC) and researchers. The several GreenDIGIT contributions are described in the subsections below. 2 https://www.egi.eu/event/egi2025/ Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 25 of 71 2.3.1.1 Booth Presence UTH, UvA and EGI coordinated the preparation, setup and operation of the GreenDIGIT booth located at the main exhibition hall of the conference venue. Booth expected goals The main objectives of the booth were to: • Raise visibility of the GreenDIGIT project among key present stakeholders. • Communicate the project's goals in reducing the environmental footprint of digital RIs. • Present early technical outcomes and the progress status. • Share physical scientific material (flyers, white papers etc.). • Distribute promotional materials. • Direct visitors to online resources (e.g., website, blogs, newsletter subscription). • Network with other projects and initiate future collaboration opportunities. Figure 7. GreenDIGIT booth at EGI 2025. Booth description Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 32 of 71 2.3.3 Dagstuhl Seminar 24462 In November 10 to 13 of 2024, the Dagstuhl Seminar 24462 on "Research Infrastructures and Tools for Collaborative Networked Systems Research” was held [1]. It was co-organised by Georg Carle and Serge Fdida, two PIs of GreenDIGIT, and brought together experts, scientists, and funding agency representatives from the network and distributed systems testbed community. The seminar’s core objective was to bridge the gap between the services offered by large-scale testbed infrastructures and the needs of researchers conducting cutting-edge experiments. The discussions aimed to enhance the value and impact of research infrastructures by fostering collaboration, streamlining experiment workflows, and developing tools that are not specific to a particular testbed. The ultimate goal is to make experimental research more modular, adaptable, and reproducible, ensuring that experiments and evaluation software can be easily modified, extended, and ported across different testbed environments. Key topics explored included strategies to improve research quality, reproducibility, and reusability, enhance discovery, and optimise the efficient use of research infrastructure resources. The seminar concluded that large-scale research infrastructures are essential for providing scientists with access to specialised, advanced resources for cutting-edge experiments. Research infrastructures require vital, long-term investment, active participation from research communities, sustained human capital development, and financial sustainability. Open access to shared physical infrastructure and open research data are equally critical. Digital sharing of scientific results accelerates innovation, enhances reproducibility, and strengthens FAIR (Findable, Accessible, Interoperable, and Reusable) data sharing through meta-services. Research infrastructures complement and amplify each other, creating a synergistic network effect that fosters a more rigorous scientific approach, driving greater collaboration and knowledge advancement. The final seminar report1 emphasises several key recommendations. It is important to define clear scientific objectives and research questions for infrastructures, while fostering strong scientific community engagement and recognising the effort of support teams. Implementing “EasyFAIR” principles for automated support is vital to ensure that digital assets are Findable, Accessible, Interoperable, and Reusable. Funding agencies should mandate open research data and reproducibility, and scientists who share data should be rewarded. Reproducibility can be enhanced by establishing concrete methodologies for comparing experimental results across different infrastructures. A multi-year investment strategy is needed for the sustained support of research infrastructures, and it is essential to develop common abstractions and standardised models for describing experiments and frameworks. The findability and accessibility of research infrastructures and testbeds can be improved through comprehensive catalogues, and standardised evaluation criteria should be defined to assess the relevance and impact of these infrastructures. User experience should be optimised, potentially using metrics like “Time to First Experiment” (TTFE), and education and training should be emphasised. Interoperability and openness between testbeds are crucial, with the use of open components facilitating the portability of experiments. Finally, flexibility and adaptability should be promoted by providing ready-to-use experimental platforms or “blueprints” that are malleable and support composability and supporting sustainable development goals involves optimising hardware resource usage efficiency and improving workflows. Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 33 of 71 2.3.4 Other • “ITU-ETSI Symposium on ICT Sustainability: Standards Driving Environmental Innovation” / Organised - 11–12 December 2024, in ITU Headquarters in Geneva, Switzerland Communication – Assessment reporting and environmental impact of ICT products, services and networks. CNIT presented GreenDIGIT Project to the community. More information here. • “Artificial Intelligence and Environmental Sustainability: The GreenDIGIT Perspective.“ - eIRG2025 presentation - GreenDIGIT was featured at e-IRG2025 with a presentation which can be found here. • “Architecture and KPIs for Green IT Networked Systems and Cloud“ - SLICES/CONVERGE Summer School 2025Tutorial at SLICES/CONVERGE Summer School 2025.More information here. • “GreenDIGIT: updates from the WLCG Environmental Sustainability Workshop” - WLCG Workshop – GreenDIGIT talk at WLCG workshop. More information here. • “GreenDIGIT: Towards Environmentally Sustainable Research Infrastructures (RIs).” - GreenSys Workshop – GreenDIGIT talk at GreenSys workshop.More information here. • “GreenDIGIT: Project and Initiative to Lower Environmental Impact of the Future Digital Research Infrastructures”, Poster, World Sustainable Energy Days WSED 2025 Conference, 47 March 2025, Wels, Austria (Yuri Demchenko, UvA) • “Greening Digital Infrastructures with Sustainable Architecture and Design Principles.” Webinar, presentation, technical event by Techstrong Group, 25 January 2025 (Yuri Demchenko, UvA) - https://www.techstrongevents.com/predict-2025/agenda • “Invited presentation: GreenDIGIT” - NetDRIVE meeting-invited presentation of GreenDIGIT at NetDRIVE.More information here. • “Environmental Sustainability in Digital Research Infrastructures - the GreenDIGIT project” – WLCG workshop - GreenDIGIT talk at WLCG Workshop.More information here. • “Special session on RIs energy efficiency and reduced environmental impact” – ICRI conference – contributions of GreenDIGIT to special session.More information here. • “Privacy Symposium” – GreenDIGIT presentation and flyers disseminated at the Exhibition Area of the 5-day conference. Participation in sessions, including “Sustainable Digital Transformation: Building a Greener Future”. • “Green Tech Forum Brussels Conference”, 17-18 June 2025. Ulpan Kudaibergenova, EBRAINS, participated in various presentations and disseminated the GreenDIGIT flyers, increasing awareness of the project’s technical work towards enhancing the sustainability of RIs. More information is available here. Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 34 of 71 It is worth noting that this sub-section summarises only a key number of event organised / participated. The complete set of publication, dissemination and communication activities are contained in Appendix A. 2.4 Contributions to Policy The GreenDIGIT dissemination team also worked during the first 18 months of the project with WP8, responsible for preparing the first policy recommendations. This involved two levels of activity: ensuring that the project's dissemination strategy is properly integrated into the policy recommendations (for example, aligning the targeted audiences and stakeholder groups), and defining and anticipating the dissemination of the policy recommendations (for example, their distribution to these target groups). The objective of these contributions is to ensure and enhance awareness, visibility, and engagement with policy recommendations of GreenDIGIT, in line with the project’s broader mission to reduce the environmental footprint of digital RIs. This includes notably the assessment of existing policies and regulations, the development of a self-assessment questionnaire and of policy recommendations. 2.4.1 Assessment of existing policies and regulations Assessment of existing policies and regulations relevant to the environmental sustainability of digital RIs was conducted in GreenDIGIT Task 8.1 and reported in D8.2 and Milestone 4 of the project. The analysis highlighted the increasing relevance of international and European frameworks, including the UN Sustainable Development Goals (SDGs), the European Green Deal, and EU regulatory instruments, such as the Corporate Sustainability Reporting Directive (CSRD), the Energy Efficiency Directive (EED), and the EU Delegated Regulation (EU) 2024/1364. The assessment overview also considered four main policy areas impacting digital RIs: Energy consumption, carbon footprint policies, waste management and circular economy, and water use. These focus areas were defined based on findings from the landscape analysis and environmental impact assessment conducted in WP3. Dissemination planning guided the structure and framing of the assessment outputs. Collaboration between WP10, WP3, and WP8 ensured that the policy review was aligned with the stakeholder groups and priorities identified in the project’s dissemination strategy, ensuring alignment with the needs of stakeholders, such as data centre operators, RI managers, and policymakers. Insights gained from early stakeholder engagement informed the identification of policy gaps and practical challenges in implementing existing regulations. This approach supports the goal of fostering uptake of sustainability practices and enhancing policy impact through targeted communication and knowledge transfer. 2.4.2 Development of self-assessment questionnaire In the context of WP8, EGI led the development of a comprehensive self-assessment questionnaire to support RIs in evaluating their alignment with environmental sustainability goals. The tool provides a structured approach for assessing current practices, identifying gaps, and setting improvement priorities across multiple thematic areas—such as governance, energy efficiency, environmental monitoring, circularity, water use, stakeholder engagement, and lifecycle integration. Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 35 of 71 The questionnaire builds on contributions from other WPs, particularly WP3 and WP4, to ensure methodological consistency with the GreenDIGIT environmental impact assessment framework and lifecycle architecture model. It incorporates maturity-based scoring, targeted capability levels, impact prioritisation (based on likelihood and magnitude), and automated generation of tailored action plans. A dedicated action-planning sheet supports RIs in estimating effort and deriving implementation priorities. As of the end of the first reporting period, the tool has reached a functionally complete state and is prepared for piloting. Testing with selected RIs is scheduled for M18, with the aim of delivering a validated version by the end of August of 2025. Feedback from this phase will guide final refinements to ensure usability, relevance, and alignment with project objectives—including WP3’s Deliverable 3.2 and the broader sustainability policy landscape. 2.4.3 Development of the policy recommendations Initial policy recommendations were also developed in WP8 based on the results of previous actions and analyses carried out in other WPs. These recommendations target digital RIs, ESFRI and Horizon Europe, as well as policymakers, with the goal of supporting internal policies, shaping a sustainable RI framework, and informing future regulations. In this context, the dissemination WP contributed by ensuring that the recommendations are aligned with the project's communication strategy and adapted to their intended audiences. This included identifying key stakeholder groups, helping to define appropriate messaging and communication channels, and anticipating the most effective ways to share and promote the recommendations. These efforts aim to increase visibility, understanding, and engagement with the proposed measures. A preliminary analysis of the feasibility of a GreenRI certification scheme was also launched, with initial recommendations produced. While the in-depth study of this certification will be conducted in a later WP, the dissemination team has begun preparing the ground to support future outreach and awareness-building activities around this topic. Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 36 of 71 3 Exploitation Activities Performed In addition to dissemination, exploitation activities play also a key role in ensuring that the results, services, and methodologies developed, contain high potential of adoptability, and can be reused and sustained beyond the execution period of GreenDIGIT. During M1–M18, the consortium undertook several targeted actions to identify relevant stakeholders and promote early results for practical uptake. This chapter outlines the exploitation activities carried out across multiple different stakeholder groups. These efforts are directly aligned with the objectives of reducing the environmental footprint of digital RIs through measurable and scalable innovations. 3.1 Stakeholder Engagement Effective stakeholder engagement is essential to ensure that the project’s outcomes are relevant to the key actors across the digital RI ecosystem. During the first reporting period, GreenDIGIT engaged with a range of stakeholders which are described in the sub-sections below. 3.1.1 Research communities One of the main exploitation objectives is to deliver value directly to the research communities, both internal and external to consortium, that are directly correlated to, utilise or maintain digital RIs. They span various disciplines like engineering that GreenDIGIT aims to optimise. During M1–M18, GreenDIGIT partners engaged with research communities through: • Collaborative use case development, ensuring that tools (e.g. for energy-aware workload scheduling or green data processing) reflect real research needs. • Tutorials and webinars target researchers as end-users of GreenDIGIT solutions (e.g., at EGI 2025). • Knowledge transfer through publications and technical events, increasing awareness of sustainability challenges in the research lifecycle. • Initial validation activities, where early architectural design and prototypes were tested within or alongside research workflows. It is worth noting that the consortium actively engaged in major events (presentations, participation etc.) like ICRI2024 (bi-annual top ministerial level conf or RIs) and e-IRG (top EU policy advising body for e-Infrastructure and RIs). There, significant feedback and interactions are gained regarding the project’s scope, goals and progress. All these efforts aimed to raise awareness on the environmental impact of computational research, as well as to provide practical tools for reducing this impact. Furthermore, these actions lay the foundation for the long-term uptake of GreenDIGIT innovations by the scientific community. In the next reporting period, the consortium will continue to intensively engage research communities through pilot deployments and extended feedback, and the expectation is to achieve crosscommunity knowledge exchange. Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 37 of 71 Submitted deliverables are also an important exploitation mechanism, which can fit in with most of the sub-sections described in Chapter 3.1. Although most deliverables provide value to more than one stakeholder group, some examples of deliverables affecting research communities are: • D3.1 “RIs Landscape Review, Best Practices Analysis and Needs.” — provides a comprehensive survey of existing sustainability efforts across ESFRI infrastructures. • D4.1 “State of the Art in RI and Digital Infrastructure Sustainability and Technologies Assessment for Energy Efficiency and Impact.” • D4.2 “Architecture Definition, Lifecycle Model and Requirements Specification for Sustainable RI.” — outlines a modular architecture and shared responsibility model designed for practical adoption by research teams and infrastructure providers. • D10.1 “Dissemination and Exploitation Plan.” — sets out the strategy for targeting research communities and measuring impact. • D10.2 “Definition of Competences and Skills for Sustainability and Training Modules.” — supports skill-building among researchers and operators to ensure effective integration of GreenDIGIT tools. It is worth noting that for better exploitation results, all public deliverables can be found online at the website of GreenDIGIT (hosted, operated and maintained from UTH), as well as at GreenDIGIT Zenodo community 4 (operated and maintained from UvA). 3.1.2 Digital Research Infrastructures (RIs) Aside from research communities, digital RIs are key stakeholders in the GreenDIGIT ecosystem, both as potential adopters of the project’s tools and as sources of knowledge about current sustainability practices. For this reason, the engagement with RIs has been a fundamental goal and activity during M1 - M18. In such a way, it is ensured that the progress of GreenDIGIT is aligned with the real-world needs, constraints and considerations of RI operators and technical managers. The development and execution of a targeted survey coordinated by SU as part of Deliverable D3.1 – “RI Landscape Review, Best Practices Analysis and Needs”, was a key milestone during the first reporting period of GreenDIGIT. The survey reached out to a broad cross-section of the European RI community and received detailed responses from: The 4 GreenDIGIT partner RIs: • EBRAINS • EGI • SLICES • SoBigData 6 external RIs and research centres: 4 https://zenodo.org/communities/greendigit/records?q=&l=list&p=1&s=10&sort=newest Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 38 of 71 • CERN • CLARIN • ELI-BEAMS • GEANT • SWITCH Cloud • University of Freiburg Computer Centre It is worth noting that each of the participating RIs serve from 60 users up to 50 million users per year, which significantly contributed to the diversity and comprehensiveness of the results.The key objectives of the detailed survey were to identify existing best practices for environmental sustainability across RIs and assess the level of awareness, maturity, and commitment to energy efficiency and green IT practices. Therefore, the consortium was able to understand the technical and policy-level needs that GreenDIGIT could address and highlight areas where tools, metrics, or methodologies are currently lacking. The information collected has been carefully and intensively used to shape the proposed architecture of GreenDIGIT. All insights and results that were extracted and detailed in Deliverable D3.1, were fed directly into the requirements and design of the GreenDIGIT tools (e.g., in Deliverable D4.2). Alongside comments and feedback obtained during public events of GreenDIGIT, they also served to further validate the project's vision. The survey revealed that while many RIs are starting to be conscious of their environmental impact, they often lack clear methodologies, monitoring tools, and benchmarks. As a result, they struggle to achieve meaningful improvements in energy efficiency. This finding highlights the strategic relevance of the planned outputs and reinforces the need for community-driven exploitation strategies. 3.1.3 Policy makers & Public authorities Addressing communication and exploitation activities aimed at policy makers and public authorities was defined as one of the priority areas of WP10 and the project as a whole. Many project outcomes target and require policy development to ensure environmental sustainability and energy efficiency throughout the whole RI lifecycle. The project targeted the following bodies and organisations: ESFRI 5 (European Strategy Forum on Research Infrastructures): GreenDIGIT targeted its activity and development at ESFRI goals and the RI community from the very beginning. • Communication with the ESFRI Chair (Jose Luis Martinez) and the ESFRI Strategy Working Group on Data, Computing and Digital Research Infrastructures was active on environmental sustainability aspects and related ESFRI policies. The activities included organising and presenting at the ICRI2024 conference session (chaired by ESFRI Chair), communicating GreenDIGIT outcomes, advising on potential policy development by ESFRI for RIs environmental sustainability and providing dedicated 5 https://www.esfri.eu/ Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 39 of 71 guidance to RIs for implementing the Environmental Sustainability Strategy as it is defined in the ESFRI Roadmap 2026, in particular presenting the RI Environmental Sustainability Strategy based on the Environmental Sustainability Strategy Questionnaire. e-IRG 6 e-Infrastructure Reflection Group); a strategic body to facilitate integration in the area of European e-Infrastructures and connected services. • Recognising the important role of e-IRG in defining technical policies and agendas for eInfrastructure development in adopting new technologies and following EU policies and recommendations, GreenDIGIT established contacts with e-IRG from the project's beginning. The project developments and recommendations for digital RIs environmental sustainability were presented at the e-IRG meeting on 24-25 June 2025 (Poznan, Poland), links to GreenDIGIT documents provided. JRC 7 (Joint Research Centre); EC department to provide independent advice to EU policymakers. JRC plays an important role in providing research reports on different research and technology topics. • JRC publishes annual reports 8 . The European Code of Conduct for Data Centres (EU DC CoC) 9 that provides an important framework for defining environmental and energy efficiency monitoring for data centres and corresponding metrics (all aspects taken into account in GreenDIGIT technical development). Contacts with the editor of the EU DC CoC 2022-2024 have been established and information exchanged, but contacts with the new editor of the 2025 report need to be reestablished. • JRC published two relevant documents: The European Green Competence Framework (2022) and The European Competence Framework for Researchers (2023), which have been used in defining the Green Competences for RIs (reported in Deliverable D10.2). Contacts with the new editor have been and a meeting is planned for autumn period. The goal is to propose extensions to the European Green Competence Framework as is suggested in Deliverable D10.2. Consolidated policy recommendations from the GreenDIGIT project and participating partner RIs are reported in the Deliverable D1.3 “Policy Briefing” that includes policy implications and recommendations. One of the recommendations includes the importance of introducing the necessary incentives for RI by funding and coordinating bodies for developing and implementing an environmental sustainability strategy (as required by ESFRI Roadmap 2026) that should be included throughout the whole RI lifecycle. 3.1.4 Standardisation bodies GreenDIGIT has initiated its standardisation and policy liaison activities under Task 10.3 by identifying Key Standardisation Organisations (SDOs) and initiatives relevant to the environmental sustainability 6 https://e-irg.eu/ 7 https://joint-research-centre.ec.europa.eu/index_en 8 https://commission.europa.eu/publications/annual-activity-report-2023-joint-research-centre_en 9 https://joint-research-centre.ec.europa.eu/jrc-news-and-updates/eu-code-conduct-data-centres-towardsmore-innovative-sustainable-and-secure-data-centre-facilities-2023-09-05_en Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 40 of 71 of digital Research Infrastructures (RIs), including ISO, ITU-T, ETSI, IEC, IEEE, CEN-CENELEC, EMAS, the Greenhouse Gas Protocol, and the Global Reporting Initiative (GRI). To build a common understanding within the consortium, an internal workshop on standards, regulations, and best practices was held to present an overview of applicable frameworks. This was followed by a consortium-wide survey to identify and prioritise the most relevant standards for the goals of GreenDIGIT. The feedback is now informing the project’s emerging standardisation strategy, to be continued in WP11 after M18. Externally, the project has begun engagement with broader policy and standardisation landscapes relevant to RIs by contributing to ongoing policy discussions, including with the European Strategy Forum on Research Infrastructures (ESFRI), and participating in relevant events, including with the International Telecommunication Union (ITU), to ensure that the specific needs and sustainability challenges of digital RIs are represented. 3.1.5 General public & Civil society Although the main stakeholder groups targeted by GreenDIGIT are technical and institutional, the exploitation potential in the general public & civil society is recognised as well. This potential can be indicatively exploited through proper education, environmental advocacy and common sustainability efforts. During the first reporting period, GreenDIGIT made significant steps to ensure that its results are accessible and reusable by non-specialist audiences. As an increased concern for the environmental impact has been thoroughly noticed, the GreenDIGIT consortium focused on: • Publishing well documented open deliverables (like D10.2 on competences and training) that can inform educational initiatives, sustainability curricula, and public learning resources. • Making tools and materials available under open licenses, and advocacy groups to adapt and reuse content for local campaigns or digital literacy workshops. • Producing tutorials and blog posts that translate technical concepts into practical knowledge for individuals and communities, encouraging more energy-conscious digital behaviour. • Highlighting best practices that can guide citizen-facing services, such as community data projects or low-carbon digital platforms. In future phases, the project aims to facilitate this further through further collaborations with educational institutions and civil society networks. This will ensure that the outputs are not only known but used for public good. 3.1.6 EOSC community and stakeholders The European Open Science Cloud (EOSC) 10 is a European Commission initiative aiming at developing an infrastructure providing researchers and innovators with services promoting open science practices. The development of EOSC is steered by the EOSC tripartite governance involving the EU 10 https://research-and-innovation.ec.europa.eu/strategy/strategy-research-and-innovation/our-digitalfuture/open-science/european-open-science-cloud-eosc_en Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 41 of 71 represented by the European Commission, the participating countries (members) represented in the EOSC Steering Board, and the research community represented by the EOSC Association 11 . The implementation of EOSC is currently taking place in the context of the EOSC European coprogrammed partnership according to a Strategic Research and Innovation Agenda (SRIA), which is co-developed with the EOSC community. A number of EOSC related projects have been funded since 2015 to build the EOSC community, develop EOSC services and EOSC infrastructure. The Horizon 2027 Work Programme on 3. Research Infrastructures includes a dedicated call topic "HORIZONINFRA-EOSC-01: Enabling an operational, open and FAIR EOSC ecosystem". The current EOSC operational model includes the EOSC EU Node 12 , procured by the European Commission (launched in October 2024) and a number of national and thematic nodes. The EOSC EU Node is the first node of the EOSC Federation, providing a set of data, tools and services to researchers across Europe. It also serves as a reference node and facilitates the interconnection of other nodes in the EOSC Federation. It is implemented by federating data, tools and services by data repositories, research infrastructures, e-infrastructures and other scientific service providers across Europe into a network of nodes. The whole EOSC organisation and planned infrastructure have many aspects of addressing environmental sustainability aspects, but the current transitional period with the EOSC setup, creates limited possibility to talk to EOSC directly via its governance structure (because of formal national membership and delegation are required). Recent EOSC Symposiums (during the project execution) had a strict procedure of selection to efficiently contribute with dissemination and exploitation activity. The GreenDIGIT project builds its dissemination and exploitation activity by interacting and cooperating with EOSC members and EOSC related projects, also by actively participating in events organised by ESFRI, e-IRG, GEANT. Further planning and more direct contact with the EOSC governing bodies should be addressed in the second period. 3.2 Adoption and Innovation Pathways Progress This section presents the progress of the important GreenDIGIT results that can be exploited to support the future greening of RIs. For those, targeted dissemination and exploitation in the second phase of the project will be performed. These activities will include but limited to dissemination through tailored communication (e.g., public deliverables, training sessions, webinars, blogs). To reflect the adoption of the cross-partner/cross-stakeholder project results such as green competences and training resources (focus of Task T10.4 and Task T11.3), we introduce the Adoption Readiness Level (ARL) to informally measure their exploitation progress. More specifically, the ARL levels can be separated as follows: • ARL 1: Concept identified (competence topics defined, initial course structure) • ARL 2: Pilot material developed (draft modules, preliminary testing in events) 11 https://eosc.eu/ 12 https://open-science-cloud.ec.europa.eu/ Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 48 of 71 External events, Posters, brochures) have been already achieved during the first period of GreenDIGIT (Appendix A). Nevertheless, significant efforts are planned for them during the second period as well, to further exploit the results of the project. Additionally, the digital means of dissemination and communication for GreenDIGIT (website and social media channels), seem to be on track to achieve the proposed goals. More specifically, regarding the website >1000 visitors/year were targeted in the DoA while the following figure depicts the visitors for 10 months. Figure 13. Website Visitors. It is noted that the progress and analytics are continuously monitored, to ensure the effective visibility of GreenDIGIT. As for the followers on social media, it is noted that the LinkedIn channel has already achieved its target, while X and YouTube are on track to reach this target. The number of YouTube videos that were targeted to be uploaded has been already fulfilled already as well. Specific emphasis was given for all digital channels of GreenDIGIT, to strategically operate to reach effectively different stakeholder groups. Finally, intensive efforts have been made, and it is expected to be increase further for the remaining KPIs. Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 49 of 71 Part II: Dissemination and Exploitation Plan – Period 2 (M19–M36) Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 50 of 71 5 Updated Strategy and Key Exploitable Results (KERs) 5.1 Strategy Overview for Period 2 The strategy for Period 2 (M19–M36) builds directly upon the momentum and outcomes of the first reporting period (M1–M18). While the first phase focused a lot on establishing project visibility, awareness, and stakeholder engagement, the second period will prioritise targeted exploitation and adoption of KERs. The aim is to convert awareness into measurable uptake by ensuring that outputs of GreenDIGIT are not only known but actively integrated into RI operations, training programs, and policy frameworks. Dissemination will continue as a critical support activity, but messaging will be refined to align with the maturity and readiness of each KER, ensuring communications are relevant to specific user needs. Key Target Audiences for exploitation include: • RIs (small - large) as primary implementers of architectures, prototypes, and methodologies. • RI operators, engineers, and developers responsible for operational integration and technical deployment. • RI Managers, administrators, and policymakers involved in governance, evaluation, and sustainability decision-making. • Academic institutions and competence centres that will integrate training modules and curricula into professional and educational programs. Exploitation Actions in Period 2 will focus on: • Operational demonstrations to validate tools, methodologies, and frameworks within selected RIs. • Open availability of technical and methodological outputs through GitHub, Zenodo, EOSC Knowledge Hub, and project channels to support independent adoption. • Embedding training modules and curricula into competence centres, academic courses, and certification schemes to ensure long-term capacity building. • Policy-level engagement through EOSC working groups, ESFRI evaluations, and alignment with European sustainability agendas to maximise strategic adoption. • Targeted dissemination campaigns across website, social media, newsletters, and events to maintain visibility while focusing on conversion to adoption. The approach for Period 2 ensures that the outputs of GreenDIGIT are positioned for long-term sustainability and impact beyond the project lifetime. By focusing on high-readiness KERs, tailored engagement, and targeted exploitation routes, the strategy is designed to strengthen uptake across Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 51 of 71 the RI ecosystem and secure alignment with European environmental sustainability priorities. A detailed description of the 7 different KERs defined, is given in section 5.2. 5.2 Key Exploitable Results (KERs) As GreenDIGIT transitions from the initial awareness and engagement phase into targeted exploitation activities for Period 2 (M19–M36), the focus shifts toward KERs that represent the project’s most mature and impactful outputs. These KERs capture the substantial results of the project’s technical developments and methodologies. In this section, each KER (Table 4. List of Key Exploitable Results (KERs)) is described in terms of its components, target audiences, disseminatio/ and exploitation strategy, and long-term sustainability. This structured approach ensures that exploitation actions are directly linked to the project’s innovation outcomes and the needs of its intended user communities. Table 4. List of Key Exploitable Results (KERs) KER Name Correlated WP(s) Involved Partners State of the Art (SotA) Overview with Analysis and Recommendations WP4, WP10, WP11 PSNC, UvA, EGI, ALL Architecture Framework for DRI Sustainability by Design WP4, WP6, WP7 WP10, WP11 UvA, EGI, UTH, IFCA, SZTAKI, ALL Research Infrastructure Lifecycle Model (RILM) WP4, WP6, WP10, WP11 EBRAINS, UvA, EGI, SoBigData User tools for lowering the environmental impact WP5 UvA, TUM, GSPT Environmental impact architecture and prototype implementation for RIs WP6 CNR, DIRACCNRS, SZTAKI, IFCA, CESNET, UTH Environmental impact assessment methodology (with guidelines) and self-assessment questionnaire for RIs WP3, WP8 MI, EGI Training modules WP10, WP11 UvA, UTH, ALL 5.2.1 KER1: State of the Art (SotA) and Technology Recommendations The GreenDIGIT Deliverable D4.1 “SotA Overview with Analysis and Recommendations” provided an extensive overview of the technologies and best practices in addressing energy efficiency and environmental sustainability in the design, deployment and operation of the digital infrastructures and related technical components. The SotA analysis included the following technology domains: Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 52 of 71 Metrics for data centre environmental sustainability reflecting partner RIs technologies and best practices at service level, node level, and site level; Energy carbon content collection; Metrics for Energy Efficiency of Network and 5G Infrastructure; Sustainability Aspects in Research Infrastructures for Experimental Research; Sustainable Software Design Practices for Scientific Software; Sustainable Architecture Design Practices by Cloud Providers AWS and Microsoft Azure; Data Management; Ongoing Research on Sustainability in Research Infrastructures. The SotA analysis is targeted for RIs community, primarily development, implementation and operation. The SotA analysis has a value for a wider community, including industry and SME. The SotA report will provide rich input for multiple forms of dissemination activities and exploitation: newsletters, whitepapers, input to the design and development of different RI components from infrastructure services to scientific software and applications, providing necessary input for technology selection for energy efficiency and environmental sustainability. The dissemination and exploitation activity will include such activities as a) Producing one or more whitepapers on the topics covered in Deliverable D4.1, published via Zenodo and distributed via dedicated social media channels b) Providing input to training modules on different aspects of digital RI environmental sustainability, scientific applications design. 5.2.2 KER2: Architecture Framework for Digital RI Sustainability by Design Following the SotA analysis and experience of the partner RIs, the project proposed the Architecture Framework for Digital RI Sustainability by Design, reported in Deliverable D4.2 “Architecture Definition, Lifecycle Model and Requirements Specification for Sustainable RI”. The proposed architecture framework includes five pillars addressing important aspects in RI design, development and operation: (1) Layered and Modular Infrastructure, (2) Energy-Efficient Software and Scientific Applications, (3) Lifecycle-Oriented Sustainability Management, (4) Common Information Model (CIM) for Sustainability Metrics, and (5) Sustainable Data Management and Storage. The proposed architecture definition provides a basis for sustainable infrastructure design and operation to support energy-aware orchestration, lifecycle planning, and low-impact scientific workflows. An important exploitable property of the proposed framework is its modularity and layered structure that allows splitting known and identified concerns and challenges in ensuring the environmental sustainability and energy efficiency of the future digital RIs by offering a set of common and reusable design principles and patterns. This is considered the main component for exploiting the Sustainability by Design that, on one hand, proposes usable technical solutions, and on the other hand, ensure interoperability of the different components. The exploitation strategy for the advanced Architecture Framework for Digital RI Sustainability by Design will include a set of communication activities to disseminate the proposed architecture solutions that may include technical papers, whitepapers, technical briefings, seminars, tutorials and Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 53 of 71 design workshops. This activity will be realised by the project partners throughout the project duration. It is also important to note that full implementation of the proposed Architecture Framework for Digital RI Sustainability by Design requires a sufficient System and Software Engineering background and corresponding DevOps methodologies (as described in Deliverable D4.2). This provides another exploitation factor in introducing recommended design principles into academic curricula due to its advanced conceptual character and variable curriculum potential. This can be done by partners universities and shared with the wider academic and research community. 5.2.3 KER3: Research Infrastructure Lifecycle Model (RILM) The Research Infrastructure Lifecycle Model (RILM) is defined as a part (Pillar 3) of the Architecture Framework for Digital RI Sustainability by Design. But RILM has its own value because it formalises the RI lifecycle stages in compliance with the ESFRI lifecycle definition and links lifecycle stage to the required compliance with the European policies and regulations related environmental sustainability and impact monitoring and reporting what is required according to ESFRI Roadmap 2026. To facilitate the exploitation of RILM to address environmental sustainability by RIs, the project produced a dedicated RIL Whitepaper that was distributed at the joint GreenDIGIT and EGI event during EGI2025 conference and other events with the GreenDIGIT involvement. Internally, the concepts, models and actors defined in RILM have been used in project activities in WP4, WP5, and WP8 and will provide further input to targeted policy development and developing necessary training modules and activities. The project and partners will use available events and channels to distribute RILM Whitepaper, engage into discussion and collect feedback. 5.2.4 KER4: User Tools for Lowering the Environmental Impact 5.2.4.1 Jupyter Extension EcoJupyter is a JupyterLab-based extension tool that provides reproducible, real-time environmental impact metrics for computational experiments within federated RIs. It enables researchers to monitor energy usage and carbon footprint directly within their notebooks through sustainability KPIs, such as Software Carbon Intensity (SCI) 14 . Designed around the GreenDIGIT 4-Pillar Conceptual Reproducibility Framework, EcoJupyter aligns with FAIR data principles and Open Science practices. It extends the typical Jupyter workflow by bundling runtime metrics, metadata, and experimental artefacts into RO-Crate 15 -compliant packages. The latter can be automatically published into the Federated Data Management Infrastructure (FDMI, SoBigData)—a catalogue and metadata exchange platform that enables researchers to share, search, and reuse computational experiments and datasets through standardised metadata and APIbased publication. Main Features 14 https://sci.greensoftware.foundation/ 15 https://github.com/ResearchObject/ro-crate Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 54 of 71 a) Real-time Sustainability Metrics Dashboard: Researchers receive live feedback during notebook execution, integrated with Scaphandre and Prometheus, with data visualised in a lightweight dashboard (React) integrated into JupyterLab as an extension. b) Reproducible Experiment Packaging: Captures a snapshot experiment metadata, environment details, and energy readings in RO-Crate format, aligned with FAIR and GreenDIGIT principles. Each Workflow is tied with a notebook, and an Experiment with its running instance. c) Automated Publishing to FDMI: On workflow completion, experiments may be submitted to the SoBigData FDMI catalogue prototype using a RESTful API call with a JSON body workload. Target users The EcoJupyter tool targets researchers and developers alike using Jupyter-based workflows in Research Infrastructures as its platform. It also supports infrastructure operators interested in integrating sustainability-aware tooling into platforms like EGI, EBRAINS, and SLICES. Dissemination and Exploitation Strategy 1. Training & Demonstrations: Recorded webinars, live tutorials, and use-case demonstrations (e.g., a organised private sessions with partners) should be available via the GreenDIGIT website and/or YouTube channel. 2. Documentation & Examples: The tool’s documentation is open-sourced on Github—with installation guides and usage scenarios. Those usage scenarios are conveyed through Jupyter notebooks to execute workflows that makes it easier to understand all the steps necessary for the tool integration. 3. Open-Source Release: All components, configuration and code are available on Github3 and published on PyPi4 for transparent reuse and extension. 4. Dissimilation & Visibility: EcoJupyter has been demonstrated through GreenDIGIT events (AllHands and Technical Meetings), with active collaboration and specification for platforms such as EGI (e.g., we use the EGI-notebook Docker image). A dedicated tutorial was also conducted as a side event at the EGI Conference in Santander, Spain, in June 2025. Extensibility and Adoption Means EcoJupyter is developed as a modular, platform-agnostic extension, ensuring easy adoption and integration across RIs. Its long-term maintenance and development is foreseen by GreenDIGIT partners and UvA, where some of its promotion includes: • Validation and portability testing across federated infrastructures (e.g., EGI, SCLICES testbeds) is also planned (T7.3) • Integration into existing RI environments (e.g., using JupyterHub and/or Kubernetes with Helm). • Standardisation efforts through stakeholders’ forums. Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 55 of 71 5.2.4.2 GreenDIGIT VRE extensions and environmental impact assessment framework for testbed experiments Key exploitable results for the GreenDIGIT Virtual Research Environment (VRE) extensions and environmental impact assessment framework for testbed experiments are outlined through various exploitation strategies, target users, and sustainability means. Regarding exploitation strategies, the software artifacts currently deployed in the SLICES-RI Post-5G Blueprint will be extended with energy aware reproducibility extensions and adopted for scientific workflows in other research infrastructures as part of WP7. Furthermore, components are already available on GitHub, and comprehensive documentation is included in the public WP5 reports. This effort has also resulted in several related publications. The primary target users for these developments include researchers and students interacting with the Research Infrastructure. The tool itself will be conveniently accessible from various dashboards. In terms of sustainability, the publication stemming from this work are expected to significantly impact scientific progress [1][1][1]. Additionally, the results will influence the design and evolution of research infrastructures, with their integral components being maintained as parts of the infrastructure. 5.2.4.3 Experiment sustainability metadata This tool is designed to assist the creation of energy and sustainability meta-data for large experiments, composed of a large number of nodes, potentially using different electricity-mixes. Such meta-data allow for analysing and sharing sustainability metrics, while retaining different granularity levels (from the overall impact of the experiment to the individual impact of each node). Use-cases include sustainability accounting of experiments, but also the identification of the most sustainable architecture during experiment design. The tool is targeted to users of RI, i.e., experimenters. The tool is implemented as Python package for easy integration into existing experiment workflows, such as Jupyter Notebooks. This tool allows for organising, storing, analysing, and sharing as open data the sustainability metrics of experiment. 5.2.5 KER5: Environmental Impact Architecture and RI Prototypes 5.2.5.1 Environmental Impact Collector DB The Environmental Impact Collector DB is a centralised data infrastructure designed to monitor and record the environmental impact of various computing sites and systems. It collects standardised environmental metrics from agents deployed on different sources, including cloud services, storage systems, Jupyter environments, grids, and networks. The data is transmitted in JSON format and securely ingested through an authorisation proxy provided by CNR, ensuring authenticated and authorised data submission. The database is structured under the monitoring schema in PostgreSQL and uses a modular, extensible design. Each computing site is registered with a type defined by a controlled vocabulary (site_type), and site-specific metrics are stored in corresponding detail tables. The fact table Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 56 of 71 (fact_site_event) acts as the central event log, capturing high-level metadata such as execution IDs, time ranges, common statistics which are common for all the sources (i.e. carbon footprint CFP), and job completion status. Detailed metrics which are specific for different sources, are linked to external tables by references. To support performance and scalability, the schema includes indexed fields for frequent query patterns. The separation of general and site-specific data allows the system to evolve with minimal disruption, as new types of infrastructures or metrics can be integrated by adding corresponding entries in the vocabulary table (site_type and site_type_detail) mapping and defining new detail tables. In terms of sustainability, the Environmental Impact Collector DB is designed for long-term maintainability. It is fully supported and maintained within the SoBigData++ infrastructure, which ensures operational continuity, hosting resources, and governance. The use of open technologies and adherence to best practices in database design make it easy to extend and integrate into broader environmental monitoring frameworks. 5.2.5.2 Impact-aware Workload Manager DIRAC serves as the workload manager and resource broker, capable of selecting suitable computing resources across heterogeneous infrastructures (local cluster, HTC, or Cloud) based on job characteristics. Through Task T6.3, DIRAC will be enhanced to include energy-aware resource brokering by integrating an environmental impact algorithm. This enhancement will rely on both jobspecific metrics and site-specific sustainability data to make informed decisions. The goal is to maximise efficiency while minimising the environmental footprint of computing. A set of new, standardised metrics has been defined in D4.2 and will be integrated into the selection process: • HS23 (HEPScore23): The normalised wall-clock CPU time used by a job. • PS23 (Power Score 23): CPU energy intensity, calculated as Thermal Design Power (TDP) divided by HS23. • PUE (Power Usage Effectiveness): The ratio indicating how efficiently a site uses energy. • CI (Carbon Intensity): The carbon footprint of electricity used during job execution, expressed in gCO₂eq/kWh. Based on these values, DIRAC will choose between different resource types (e.g., faster CPUs) and data centres (high environmental performance), according to user-defined policies. For example, a memory-intensive task could be directed to a site with low CI and optimised RAM provisioning, while an I/O-heavy task may be routed to a local centre with better PUE but higher CI, depending on the job's urgency and resource availability. This functionality is designed to be user-friendly and can be used both by researchers (end users) and Research Infrastructure operator, that are providing VRE to researchers. For example, researchers will submit their jobs through the DIRAC interfaces, and comprehensive documentation will explain the selection mechanism to ensure reproducible workflows. DIRAC will also provide environmental metrics post-execution, allowing users to assess the environmental impact of their jobs. The Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 57 of 71 environmental metrics will be also sent to the GreenDIGIT Metrics DB service which will accumulate data from various computing infrastructures in a uniform way to allow monitoring of activities of research groups and evaluate the corresponding environmental impact. This monitoring is necessary to optimise the efficiency of the eventual impact-aware workload scheduling algorithms. The dissemination strategy includes promoting this development as a new feature of the existing, well-known workload manager. Documentation will cover technical details of the resource selection algorithm and example use cases. Presentations at scientific computing and infrastructure conferences (e.g., DIRAC User Meeting, WLCG Workshop, EGI Conference) will highlight the feasibility of including environmental requirements in job workflows and assessing carbon footprints. From a sustainability perspective, the component will be released under the Open Source GPLv3 license and made available on the DIRAC GitHub repository. It will also be archived by the Software Heritage repository. Additional metadata, based on the code meta standards, will be added to the DIRAC repository to enhance the findability and citability of the software. As long as the environmental metrics are published by the computing sites, the component will function effectively. We will also include a specific module related to this component in the DIRAC standard training documents to enhance both sustainability and dissemination. 5.2.5.3 Impact-aware Subsystems As described above, components belonging to individual levels work together to achieve the desired effect. The task of components at this level is to directly manage resources at the local site level based on energy and environmental metrics (workload characteristics, current carbon intensity of electricity, or other preferences resulting, for example, from the price profile of electricity consumption). A new component here is the energy optimisation controller, whose task is to combine available metrics/signals (current carbon intensity of electricity and regulatory requirements from the electricity grid or local heating network) with local policy. The resulting decision is implemented by the local batch system and auxiliary control components. Control measures may include: lowering the maximal CPU or GPU frequency, temporarily stopping jobs or shutting down the worker nodes, delaying or reshuffling the workload based on its characteristics. Basically, these are low-level components hidden from the majority of researchers. But understanding their role is key to fine-tuning and improving the results. They provide important metrics on the achieved level of optimisation of the environmental impact, and knowledge of the concept of their functioning is necessary for anyone who designs scientific computing workflows. However, the typical user of these components remains the site administrator, who is responsible for the efficient use of actual resources. Dissemination strategy: communicate as a technical background that is both professionally interesting and necessary for understanding the overall picture and why user involvement is needed. It is also important to understand the reason behind guidelines for researchers and workflow developers. The main topics: understanding the CPU intensity (CPU vs IO), signals from power grid (carbon intensity) and typical computing node power profile. From a sustainability perspective, it is important to demonstrate the real benefits of new components. For this feedback, we will collect metrics and show the results specifically in the form of a dashboard (for site managers and operations) and targeted reports (researchers). The training Copyright © 2025 GreenDIGIT | D10.3 – Dissemination report Period 1 Page 64 of 71 Appendix A. Dissemination Log (Period 1) This appendix contains attached the complete information for the three major categories used to track publications, dissemination and communication activities during the execution of GreenDIGIT (M1 – M18). This information is continuously updated by the consortium members involved when new entries are available. It is worth noting that the information requested from the partners complies with this, required from EC during the project’s reporting. Table 5.List of dissemination logs Type Reference Figure Hyperlink Table List of Publications Figure 14. List of Publications. Hyperlinks are available to base text (Section 2.1) List of dissemination activities Figure 15. List of Dissemination Activities. Table 6. Dissemination Activities Hyperlinks. List of communication activities Figure 16. List of Communication Activities. Table 7. Communication Activities Hyperlinks. No Type of PID (repository) PID (publisher version of record) PID of deposited publication (not required) Publication title Type of publication Other - Type Link Link to publication (not required) Authors Title of the journal or equivale nt (not required) Number (not required) ISSN or eISSN Publisher Month of publication Year of publication Was the publication available in open access through the repository at the time of publication Yes/No Peer-reviewed PID of Book (not required) Book title (not required) Did you charge OA publishing fees on the project Article processing costs that will be charged to the proje ct License type Location (if applicable) Partners involved Comments Status 1Choose an item Poster “GreenDIGIT: Project and Initiative to Lower Environmental Impact of Digital Infrastructures” Conference Publication proceeding/worksho p https://www.ictopen.nl/ April 2024 Choose an item Choose an item Choose an item Choose an item Utrecht, Netherlands EGI Poster attracted attentions, flyers distributed. Contributed to plenary discussion on the Choose an item 2 DOI DOI 10.23919/IFIPN ETWORKING62 109.2024.10619 057 RO-Crate for Testbeds: Automated Packaging of Experimental Results Conference Publication proceeding/worksho p https://networking.ifip.org/2024/index.php/workshops/sli ces https://doi.org/10.23919/IFIPNetworking62109.2024.106190 57 Eric Hauser, Sebastian Gallenmüller, Georg Carle Thought experiments, data and reproducibility for networking and FutureG research (SLICES) 2024 IFIP June 2024 No Yes No Other licenses Thessaloniki, Greeze TUM, SLICES Delivered/Partici pated/Presented 3 None Poster: „SLICES-DE: A Digital Research Infrastructure for Germany and Europe“ Conference Publication proceeding/worksho p https://collab.dvb.bayern/display/TUMtueisecevents/CoC+ Industry+Day+2024 Christoph Wen, Eric Hauser, Sebastian Gallenmüller, Georg Carle - June 2024 No No - - No Other licenses Munich, Germany TUM, SLICES Delivered/Partici pated/Presented 4 None Poster: „Sustainable Digital Research Infrastructures“ Conference Publication proceeding/worksho p https://www.tum.de/en/about-tum/goals-andvalues/sustainability/sustainability-day-2024 Kilian Holzinger, Johannes Späth, Sebastian Gallenmüller, Georg Carle - June 2024 No No - - No Other licenses Garching near Munich, Germany TUM, SLICES Delivered/Partici pated/Presented 5Choose an item Presentation and Abstracts “Defining Artificial Intelligence Competences and Knowledge Based on the Job Market Analysis” Conference Publication proceeding/worksho p https://iated.org/edulearn/ EDULEARN2024 Conf July 2024 Choose an item Choose an item Choose an item Choose an item Palma, Spain UvA Provides UvA experience on the defining necessary curriculum elements to address Choose an item 6Choose an item IEEE GreenCom-2024 Conf on Green Computing and Communication Conference Publication proceeding/worksho p https://ieee-cybermatics.org/2024/greencom/ IEEE August 2024 Choose an item Choose an item Choose an item Choose an item Copenhagen, Denmark UvA UvA research on green computing Choose an item 7 None Poster: Post-Quantum Secure In-Flight Communication over 6G Networks Conference Publication proceeding/worksho p Daniel Petri, Kilian Holzinger, Henning Stubbe, Sebastian Gallenmüller, Georg Carle - November 2024 No No No Other licenses Ottobrunn, Germany TUM, SLICES Delivered/Partici pated/Presented 8 DOI DOI 10.1109/EDUCO N60312.2024.10 578607 The Importance of System Engineering Competences and Knowledge in Large Scale Digital Research Infrastructure Projects Conference Publication proceeding/worksho p https://ieeexplore.ieee.org/document/10578607 Yuri Demchenko IEEE Choose an item Choose an item Yes Yes Choose an item Choose an item Choose an item 9 DOI https://arxiv.or g/abs/2405.042 63 https://arxiv.or g/abs/2405.042 63 Energy-Efficient Deployment of Stateful FaaS Vertical Applications on Edge Data Networks Conference Publication proceeding/worksho p https://arxiv.org/abs/2405.04263 https://arxiv.org/abs/2405.04263 Claudio Cicconetti, Raffaele Bruno, Andrea Passarella IEEE May 2024 Yes No Choose an item Choose an item Choose an item 10 DOI 10.5281/zenod o.15224281 AndroWatts: Unpacking the Power Consumption of Mobile Device's Components Conference Publication proceeding/worksho p https://hal.science/hal-04928609/ Édouard Guégain, Rémy Raes, Noé Chachignot, Clément Quinton, Romain Rouvoy IEEE April 2025 Yes Yes No Choose an item Ottawa, Canada GSPT Upcoming 11 None Poster : AndroWatts: Unpacking the Power Consumption of Mobile Device's Components Other Poster Édouard Guégain, Rémy Raes, Noé Chachignot, Clément Quinton, Romain Rouvoy March 2025 No No No Choose an item Rennes, France GSPT Poster attracted attentions from the French Green IT community, including Delivered/Partici pated/Presented 12 Choose an item Presentation Greener Future Digital Research Infrastructures Conference Publication proceeding/worksho p https://www.itu.int/en/ITU-T/Workshops-andSeminars/2024/1211/Pages/programme.aspx https://www.itu.int/en/ITU-T/Workshops-andSeminars/2024/1211/Documents/Raffaele%20Bolla.pdf Raffaele Bolla Choose an item Choose an item Choose an item Choose an item Choose an item Choose an item Choose an item 13 URI SLICES Security Conference Publication proceeding/worksho p Poster https://www.forschung-it-sicherheitkommunikationssysteme.de/nationale-konferenz-itsicherheitsforschung-2025 http://www.net.in.tum.de/fileadmin/bibtex/publications/ papers/gallenmueller_itsf25_poster.pdf Sebastian Gallenmüller, Kilian Holzinger, Daniel Petri, Georg Carle March 2025 Yes Yes No Other licenses Berlin, Germany TUM, SLICES Presentation to German Research Ministry members and Delivered/Partici pated/Presented 14 None Dynamic Resource Allocation and Energy Optimization in 5G ORAN: Real-World Insights and Testbed Evaluations Conference Publication proceeding/worksho p ICC2025 MORE INFO SOON Caterina Leonelli, Dimitris Kefalas, Serge Fdida, Paolo Bellavista, Thanasis Korakis Choose an item Choose an item Choose an item Choose an item Choose an item Choose an item Choose an item 15 DOI Aging-aware CPU Core Management for Embodied Carbon Amortization in Cloud LLM Inference Conference Publication proceeding/worksho p Paper https://arxiv.org/pdf/2501.15829 Tharindu B. Hewage , Shashikant Ilager, Maria Rodriguez Read , and Rajkumar Buyya ACM e-energy (to be appear) ACM May 2025 Yes Yes No Choose an item Rotterdam, Netherlands UvA Ongoing 16 DOI Generic and ML Workloads in an HPC Datacenter Other dataset https://zenodo.org/records/13685426 https://zenodo.org/records/13685426 Xiaoyu Chu, Daniel Hofstätter, Shashikant Ilager, Sacheendra Talluri, Duncan Kampert, Damian Podareanu, Dmitry Duplyakin, Ivona Brandic, Alexandru Iosup IEEE ICPADS Choose an item 2024 Choose an item Choose an item Choose an item Choose an item UvA Delivered/Partici pated/Presented 17 DOI A Data-driven Analysis of a Cloud Data Center: Statistical Characterization of Workload, Energy and Temperature Other dataset https://zenodo.org/records/10069402 https://zenodo.org/records/10069402 Shashikant Ilager, Adel N. Toosi, Mayank Raj Jha, Ivona Brandic, Rajkumar Buyya ACM/IEEE UCC Choose an item 2024 Choose an item Choose an item Choose an item Choose an item UvA Delivered/Partici pated/Presented 18 DOI DOI not yet available (accepted – to be presented) Scalability and Performance Evaluation of IEEE 802.11ah IoT Deployments: A Testbed Approach Conference Publication proceeding/worksho p Paper Link not yet available (accepted – to be presented) Kostas Chounos, Katerina Kyriakou, Thanasis Korakis IEEE DCOSS-IoT 2025 IEEE June 2025 Choose an item Yes Yes Choose an item UTH Upcoming 19 DOI 10.14459/2025 mp1773238 Continuous Integration for Networks Supporting Low-Latency Using Hybrid Network Emulation Conference Publication proceeding/worksho p Paper + Dataset https://www.net.in.tum.de/fileadmin/bibtex/publications /papers/wiedner_itc36.pdf Florian Wiedner, Dominik Kreutzer, Jonas Andre, Georg Carle 36rd International Teletraffic Congress (ITC-36) IEEE June 2025 yes yes Choose an item Choose an item Norway TUM, SLICES Delivered/Partici pated/Presented 20 URI https://www.n et.in.tum.de/fi leadmin/bibte x/publications/ papers/2025simonp4tee.pdf TEE Time at P4—Performance Analysis of Trusted Execution Environments for Packet Processing Conference Publication proceeding/worksho p Paper https://www.net.in.tum.de/fileadmin/bibtex/publications /papers/2025-simon-p4tee.pdf Manuel Simon, Sebastian Warter, Sebastian Gallenmüller, Georg Carle 11th IEEE International Conference on Network Softwarization (NetSoft 2025) IEEE June 2025 yes yes Choose an item Choose an item Budapest, Hungary TUM, SLICES Delivered/Partici pated/Presented 21 DOI http://dx.doi.o rg/https://doi. org/10.1016/j.c omcom.2025.1 08178 A methodology for reproducible and portable experiment workflows Article in journal Journal https://www.sciencedirect.com/science/article/pii/S01403 66425001355 https://www.sciencedirect.com/science/article/pii/S01403 66425001355 Henning Stubbe, Sebastian Gallenmüller, Georg Carle Computer Communications 239 Sciencedirect July 2025 yes yes Choose an item Choose an item TUM, SLICES Delivered/Partici pated/Presented 22 DOI http://dx.doi.o rg/http://dx.do i.org/10.15496/ publikation105102 Dynamic Data Planes Updates using Lua and libmoon Conference Publication proceeding/worksho p https://publikationen.unituebingen.de/xmlui/bitstream/handle/10900/163772/4th_k uvs_fg_netsoft_08.pdf Manuel Simon, Sebastian Gallenmüller, Georg Carle 4th GI/ITG KuVS Fachgespräch "Network Softwarization" GI/ITG April 2025 yes yes Choose an item Choose an item Tübingen, Germany TUM, SLICES Delivered/Partici pated/Presented 23 DOI http://dx.doi.o rg/10.1145/369 4811.3697820 im2HW: Modeling Latency Offset Between Network Simulations and Hardware Measurements Conference Publication proceeding/worksho p https://www.net.in.tum.de/fileadmin/bibtex/publications /papers/spaethj-gnnet3-slides.pdf Johannes Späth, Max Helm, Benedikt Jaeger, Georg Carle Proceedings of the 3rd GNNet Workshop: Graph Neural Networking Workshop (GNNet ’24) ACM December 2024 yes yes Choose an item Choose an item Los Angeles, USA TUM, SLICES Delivered/Partici pated/Presented 24 DOI http://dx.doi.o rg/10.23919/CN SM62983.2024. 10814561 n-the-fly Table Insertions on Programmable Software Data Planes Conference Publication proceeding/worksho p http://www.net.in.tum.de/fileadmin/bibtex/publications/ papers/2024-simon-cnsm-addonmiss.pdf Manuel Simon, Sebastian Gallenmüller, Georg Carle 20th International Conference on Network and Service Management (CNSM 2024) IEEE October 2024 yes yes Choose an item Choose an item Prague, Czech Republic TUM, SLICES Delivered/Partici pated/Presented 25 URI http://www.ne t.in.tum.de/fil eadmin/bibtex /publications/ papers/wiedne r_2024_cnsm.p df Applicability of Hardware-Supported Containers in LowLatency Networking Conference Publication proceeding/worksho p http://www.net.in.tum.de/fileadmin/bibtex/publications/ papers/wiedner_2024_cnsm.pdf Alexander Daichendt, Florian Wiedner, Jonas Andre, Georg Carle 20th International Conference on Network and Service Management (CNSM 2024) IEEE October 2024 yes yes Choose an item Choose an item Prague, Czech Republic TUM, SLICES Delivered/Partici pated/Presented 26 doi http://dx.doi.o rg/10.1145/367 2197.3673436 Honey for the Ice Bear - Dynamic eBPF in P4 Conference Publication proceeding/worksho p https://dl.acm.org/doi/pdf/10.1145/3672197.3673436 Manuel Simon, Henning Stubbe, Sebastian Gallenmüller, Georg Carle ACM SIGCOMM 2024 Workshop on EBPF and Kernel Extensions ACM August 2024 yes yes Choose an item Choose an item Sydney, Astralia TUM, SLICES Delivered/Partici pated/Presented 27 DOI https://doi.org /10.1109/ACCE SS.2024.346722 8 Automated Debugging Mechanisms for Orchestrated Cloud Infrastructures With Active Control and Global Evaluation Article in journal https://ieeexplore.ieee.org/document/10693454 https://ieeexplore.ieee.org/document/10693454 J. Kovács, B. Ligetfalvi and R. Lovas IEEE Access 12 IEEE September 2024 yes yes SZTAKI Delivered/Partici pated/Presented 28 DOI Forward Error Correction and Weighted Hierarchical Fair Multiplexing for HTTP/3 over QUIC Conference Publication proceeding/worksho p http://www.net.in.tum.de/fileadmin/bibtex/publications/ papers/holzinger2025quic.pdf Kilian Holzinger, Daniel Petri, Stefan Lachnit, Marcel Kempf, Henning Stubbe, Sebastian Gallenmüller, Stephan Günther, Georg Carle International Federation for Information Processing (IFIP) Networking 2025 Conference (IFIP Networking 2025) IEEE May 2025 yes yes Choose an item Choose an item Limassol, Cyprus Delivered/Partici pated/Presented 29 DOI BrowsEm: Model-based Web Site Loading Emulation Conference Publication proceeding/worksho p http://www.net.in.tum.de/fileadmin/bibtex/publications/ papers/holzinger2025browsem.pdf Kilian Holzinger, Florian Klein, Daniel Petri, Stefan Lachnit, Sebastian Gallenmüller, Georg Carle Proceedings of the Applied Networking Research Workshop ACM July 2025 yes yes CC-BY Madrid, Spain Delivered/Partici pated/Presented Figure 14. List of Publications. Copyright © 2025 GreenDIGIT | DELIVERABLE D10.3 – Dissemination report Period 1 Page 66 of 71 No. Dissemination activity name (include date) Type of dissemination activity (What?) What -Other (describe if applicable) Target audience reached (Who?) Who -Other (describe if applicable) Description of the objective(s) with reference to a specific project output (max 200 characters) (Why?) Status of the dissemination activity Status - Other (e.g. Dissemination opportunity, Informational only, upcoming) Project partners involved URL (if applicatble) Additional Information Registered in EC portal 1 Conference Research Infrastructures Conferences Research Infrastructures in a Changing Global, Environmental and Socio-economical Context Research communities The conference will focus on 3 main issues: 1) Research Infrastructures (RIs) as key players of strategic autonomy in a changing global context; 2) the socio-economic and environmental impact of RIs and 3) the broad ecosystems of RIs. Delivered SU https://www.belspo.be/belspo /EUBelgium24/2024060405_ ResearchInfrastructures_en. stm Serge Fdida, Yuri Demchenko, Gergely Sipos (all online attendance) YES 2Privacy Symposium 2024 Conferences Research communities Session on research infrastructures for data security and privacy Delivered MI https://privacysymposium.org / Sébastien Ziegler, Iida Lehto YES 356.EurOpen.CZ conference Conferences The Czech Society of Open Systems Users EurOpen.CZ is a nonprofit organization whose goal is to familiarize the professional public with open solutions and promote their use. Industry/business partners also: research communities and specific end user communities Czech local conference connected with USENIX, open systems, administration, programming, security. Delivered CESNET https://56.europen.cz/ Jiří Sitera, Zdeněk Šustr YES 4Czech annual EUNIS conference Conferences A platform for the presentation of new technologies and a space for the exchange of experience in their implementation. The event is intended especially for university experts and Research communities Industry partners EUNIS-CZ is an independent interest-based association, membership includes all public universities and companies active in the implementation, development, management or use of information systems. Delivered CESNET https://www.eunis.cz/ Jiří Sitera YES 5x Conferences International conference for RI coordination Research communities also: European institutions Special session on RIs energy efficiency and reduced environmental impact - ICRI2024 Conference Coordination and RIs activities and initiatives Delivered UvA, EGI https://icri2024.au/call-forside-events-and-site-tours/ Gergely Sipos, Yuri Demchenko YES 6EGI2024 Conference Conferences Short talk on the GreenDIGIT update and objectives to invite contribution and cooperation Research communities EGI community and partners development and coordination Delivered UvA https://indico.egi.eu/event/644 1/timetable/#20240930 https://www.egi.eu/event/egi2 024/ Gergely Sipos, Yuri Demchenko YES 7EOSC2024 Symposium Conferences Annual EOSC Conference Research communities Possible contribution will be investigated. Project purpose to spread GreenDIGIT goals and activities, obtain feedback and invite contribution. Delivered UvA https://eosc.eu/symposium20 24/ Yuri Demchenko YES 8 Nationale Conferentie Duurzame Digitalisering, 30 Sept 2024, Utrecht Nerherlands National Conference Nerherlands National Conference Research communities UvA members will attend the conference except coordinator (due to AH at that time) Delivered UvA https://coalitieduurzamedigital isering.nl/events/nationaleconferentie-duurzamedigitalisering-2024/ Yuri Demchenko YES 9IEEE Big Data 2024 Call for Papers Conferences International conference Research communities Conference is addressing Big Data infrastructures cloud, edge, data management Delivered 15-18 Dec 2024 YES 10 CESNET annual conference Conferences Czech national conference organized by CESNET Research communities Presentation of CESNET services and research activities including hand-on presentations. Ongoing planned for March 2025 CESNET YES, as ongoing 11 Dagstuhl-Seminar 24462 Meetings Research Infrastructures and Tools for Collaborative Networked Systems Research Research communities International seminar with research infrastructure specialists Delivered TUM, SU, SLICES https://www.dagstuhl.de/2446 2 Serge Fdida, Yuri Demchenko, Georg Carle, Sebastian Gallenmüller YES 12 Seminar at Seoul National University Meetings Valorising scientific data with the EGI einfrastructure Research communities Lowering the environmental impact of computing Delivered EGI https://zenodo.org/records/13 970506 Gergely Sipos (EGI) YES 15 Conference Research Infrastructures Conferences Researc h Infras tructures in a changing Globa l, Environmental & Socioeconomical context Research communities Attended the session about Soc io-economical and environmental i mpact of RI's and presentati on about Greening of Research Infrastruc tures, networked and c onnected the ins ights gai ned from the event with the project Delivered EBRAINS https://www.belspo.be/belspo /EUBelgium24/2024060405_ ResearchInfrastructures_en. stm Ulpan Kudaibergenova NO (see dessimination activity 1) 16 IFIP Networking 2024 Collaboration with EU-funded projects Research communities 3-6 June 2024, Thessaloniki, Greece. The main objective of Networking 2024 is to bring together academic and industrial experts of the networking community to discuss the most recent advances in networking, to highlight key issues, identify trends, and develop a vision of the future Internet from a design, deployment and operation standpoints. The technical sessions for Networking 2024 will be organized, with a focus on the following areas, among others: Delivered SU, UTH https://networking.ifip.org/202 4/ Serge Fdida YES 17 CRONOS Interactive Session Webinar Conferences Research communities 16 November 2024, online. This program aims to contribute to an advancement of Japan's information and communication sciences through developing innovative technologies in the field and fostering researchers with unique ideas and conceptual skills. Delivered SU Serge Fdida YES 18 Networld Europe General Assembly Meetings Research communities 16 December 2024, online. Presentation of SLICES-RI and related initiatives (GreenDIGIT) during the GA. Delivered SU No link Serge Fdida YES 19 ESFRI roadmap 2026 – MESR Other French Ministry Research communities 18 December 2024, Paris, France. Presentation of the ESFRI roadmap 2026 to the French community. Presenation of Serge Fdida Delivered SU https://www.horizoneurope.gouv.fr/form/inscripmaj-2026-feuille-route-forumstrat Serge Fdida YES 20 Press release on Wired Magazine Other Citizens 5 February 2025. Magazine article presenting CNR’s research infrastructures in the ESFRI DIGIT domain, and discussing the role so sustainability challenges in digital science research Delivered CNR https://www.wired.it/article/cn r-infrastrutture-digitali-ricercaslices-d4sciencesobigdata/?fbclid=IwY2xjawI QXXVleHRuA2FlbQIxMQABH YNzFpiLajA_NNxX7wX2vMNDrUOoz1zNFQ_a Fp96o0cvjZDFewNwnBrg_aem_yF G8Xa7djmyAdLNAasZUEw Roberto Trasarti, Andrea Passarella YES 21 EDUCON2024 Conferences Research communities 8-11 May 2024. EDUCON2024 Conference paper and presentation. Contribution to Task 10.4 in developing green competences framework. Delivered UVA https://2024.ieee-educon.org/ Yuri Demchenko YES 22 NetDRIVE Meetings Research communities 18-19 Feb 2025, NetDRIVE meeting, Presentation of GreenDIGIT project and its 'Shared Responsibility in Sustainability of RI' model NetDRIVE project is developing a forum for managers, software engineers, academics and others to come together to build a common vision for a sustainable future and to incite a transition to sustainable working practices in the Digital Research Infrastructure (DRI) communities by 2040 or sooner Delivered EGI https://indico.ph.qmul.ac.uk/e vent/2173/ Catalin Condurache YES 23 WLCG Environmental Sustainability Workshop Other Workshop Research communities 11-13 Dec 2024, CERN – Presentation of GreenDIGIT project on Environmental Sustainability in Digital Research Infrastructures Workshop objectives: (a) Connect and disseminate the wide range of work that is going on in WLCG, HEP experiments, and the wider community. (b) Explore the active and practical steps that WLCG can take to encourage an increasingly sustainable global infrastructure. (c) Establish sustainability as a central concern in the evolution of WLCG, as described in the recent WLCG Strategy. Delivered EGI https://indico.cern.ch/event/1 450885/ Catalin Condurache YES 24 GreenDIGIT WP4/WP5 design workshop Meetings Research communities Di scussed cr ucial aspects of building more sustainabl e digital research infras tructures with WP4-6 Delivered EBRAINS, other project partners Ulpan Kudaibergenova from EBRAINS 25 GreenDIGIT All-hands meeting (30 September - 1 October 2024) Conferences Research communities Dis cussed the importance of priori tis ing loweri ng the environmental i mpact of digi tal servic es and technologi es, and introducing more s ustainabl e struc tures wi thin resear ch infra structures throughout Europe and beyond. Delivered EBRAINS, other project partners Ulpan Kudaibergenova, Ciprian Ciulpan, Madumathi Singaraju, Ana Fota from EBRAINS 26 Online event Conferences Industry/business partners Partici pated in the "AI for my compa ny: Digi tal Sol utions for Energy Effici ency & Energy Saving" on 30 January 2025 to lea rn from the experi ence of SMEs i n the field of reduci ng the envir onmental footprint Delivered EBRAINS Cipr ian Ci ulpan, Ca melia Vas ile from EBRAINS 27 Nationale Konferenz IT Sicherheitsforschung Conferences National authorities and researchers Presented GreenDIgit and SLICES in a poster session and stressed its importance for cyber security research Delivered TUM, SU, SLICES https://www.forschung-itsicherheitkommunikationssysteme.de/ nationale-konferenz-itsicherheitsforschung-2025 28 Privacy Symposium 2025 Conferences International conference Inter. Organization 12-16 May, 2025. Presenting GreenDIGIT in the conference exhibition space and disseminating flyers. Following a session on Sustainable Digital Transformation: Building a Greener Future. Ongoing MI https://privacysymposium.org / Iida Lehto, Sébastien Ziegler from MI 29 Journées du GDR GPL 2025 Clustering activities French National Work Group Research communities 16-17 June, 2025. Dissemination of Green Digit results to the French academic software ingeneering community. Delivered GSPT https://gdrgpl2025.sciencesc onf.org/ Edouard Guégain 30 Green Tech Forum Brussels Conferences International conference Industry/business partners 17-18 June, 2025. Participated in various presentations and disseminated the GreenDigit flyers Delivered EBRAINS https://www.greentech-forumbrussels.com/ Ulpan Kudaibergenova 31 EGI Foundation Annual Conference 2025 Conferences GreenDIGIT booth Research communities 2-6 June 2025, Santander. Participated in various presentations and dissemination activities at the GreenDIGIT booth Delivered EBRAINS https://www.egi.eu/event/egi2 025/ Ulpan Kudaibergenova Figure 15. List of Dissemination Activities. Copyright © 2025 GreenDIGIT | DELIVERABLE D10.3 – Dissemination report Period 1 Page 67 of 71 Table 6. Dissemination Activities Hyperlinks. No Hyperlink 1 https://www.belspo.be/belspo/EUBelgium24/2024060405_ResearchInfrastructures_en.stm 2 https://privacysymposium.org/ 3 https://56.europen.cz/ 4 https://www.eunis.cz/ 5 https://icri2024.au/call-for-side-events-and-site-tours/ 6 https://indico.egi.eu/event/6441/timetable/#20240930 https://www.egi.eu/event/egi2024/ 7 https://eosc.eu/symposium2024/ 8 https://coalitieduurzamedigitalisering.nl/events/nationale-conferentie-duurzamedigitalisering-2024/ 9 - 10 - 11 https://www.dagstuhl.de/24462 12 https://zenodo.org/records/13970506 13 https://www.belspo.be/belspo/EUBelgium24/2024060405_ResearchInfrastructures_en.stm 14 https://networking.ifip.org/2024/ 15 - 16 - 17 https://www.horizon-europe.gouv.fr/form/inscrip-maj-2026-feuille-route-forum-strat 18 https://www.wired.it/article/cnr-infrastrutture-digitali-ricerca-slices-d4science-sobigdata 19 https://2024.ieee-educon.org/ 20 https://indico.ph.qmul.ac.uk/event/2173/ 21 https://indico.cern.ch/event/1450885/ 22 - 23 - 24 - Copyright © 2025 GreenDIGIT | DELIVERABLE D10.3 – Dissemination report Period 1 Page 68 of 71 25 https://www.forschung-it-sicherheit-kommunikationssysteme.de/nationale-konferenz-itsicherheitsforschung-2025 26 https://privacysymposium.org/ 27 https://gdrgpl2025.sciencesconf.org/ 28 https://www.greentech-forum-brussels.com/ 29 https://www.egi.eu/event/egi2025/ Copyright © 2025 GreenDIGIT | DELIVERABLE D10.3 – Dissemination report Period 1 Page 69 of 71 No. Communication activity name Type of dissemination activity (What?) What -Other (describe if applicable) Target audience reached (Who?) Who -Other (describe if applicable)2 Description of the objective(s) with reference to a specific project output (max 200 characters) (Why?) How? Communcation channel Status of the communication activity Status - Other (e.g. Dissemination opprotunity, Informational only, upcoming) Outcome Project partners involved URL (if applicatble) Additional Information 1 TUM Sustainability Day Education and training events info day Civil society experience the diversity and potential of all sustainability topics and activities at our university on TUM Sustainability Day. Event (conference, meeting, workshop, internet debate, round table, group discussion, etc.) Delivered Presented poster and small portable testbed demonstrator to many interested participants TUM https://www.tum.de/en/abou t-tum/goals-andvalues/sustainability/sustaina bility-day-2024 Kilian Holzinger, Sebastian Gallenmüller, Johannes Späth, Georg Carle 2 Linux Days Conferences Czech national OSS conference Industry/business partners Primary target group is Linux users and students of technical universities in CZ. Presentation of green concepts in research infrastructures with reference to power-grid flexibility as particular technical aspect. Event (conference, meeting, workshop, internet debate, round table, group discussion, etc.) Delivered Presentation and dissemination activity at CESNET booth. CESNET https://www.linuxdays.cz/202 4/ Jiří Sitera 3 CoC Industry Day 2024 Education and training events Industry workshop Industry/business partners also: research communities exchange with industrial partners on 6G, quantum computing, AI and sustainability Event (conference, meeting, workshop, internet debate, round table, group discussion, etc.) Delivered Presentation of sustainability aspects in the context of SLICES TUM https://collab.dvb.bayern/disp lay/TUMtueisecevents/CoC+In dustry+Day+2024 Sebastian Gallenmüller, Georg Carle 4 Berlin 6G Conference 2024 Conferences The Annual Networking Event of the German 6G Program: Session on Large Scale Experimentation Facilities Industry/business partners also: research communities German 6g projects and their results, EU 6G programs, regulatory questions such as sustainability, networking Event (conference, meeting, workshop, internet debate, round table, group discussion, etc.) Delivered Presentation of GreenDigit intiative in the context of 6G testbeds TUM, SU, SLICES https://www.6gplatform.com/berlin-6gconference/ Manuel Simon, Sebastian Gallenmüller, Georg Carle, Serge Fdida 5 ITU-ETSI Symposium on ICT sustainability : Standards Driving Environmental Innovation Conferences Research communities Exchange with industry leaders, policymakers, etc. on the role of standards in promoting sustainable ICT practices. Event (conference, meeting, workshop, internet debate, round table, group discussion, etc.) Delivered Event participation MI https://www.itu.int/en/ITUT/Workshops-andSeminars/2024/1211/Pages/de fault.aspx Iida Lehto 6 Airbus Wireless Workshop 2024 "On Cruise to 6G" Clustering activities Industry/business partners Presentation of Green Digital RIs with a poster and exchange. Target audience is the intersection of 6G industry, researchers, and European aviation industry Event (conference, meeting, workshop, internet debate, round table, group discussion, etc.) Delivered Event participation TUM, SLICES Daniel Petri, Kilian Holzinger, Georg Carle 7 HUNGARNET yearly user conference Conferences Research communities IT staff Awareness raising and promoting sustainable solutions and technologies Event (conference, meeting, workshop, internet debate, round table, group discussion, etc.) Choose an item upcoming Presentation about the GreenDIGIT project SZTAKI 8 EBRAINS Website news item Other News item on Project kick-off Research communities Raising awareness on project objectives and highlighting the role of the four digital Research infrastructures, including EBRAINS Other Delivered Promotion of the project online EBRAINS https://www.ebrains.eu/proje cts/greendigit Camelia Vasile, Ana Fota 9 EBRAINS Social media Other Announcing project Kick-off on social media Research communities Promoted EBRAINS’ role in the GreenDigit project on Twitter, Mastodon, Bluesky and LinkedIn Social media Delivered Promotion of the project online EBRAINS https://x.com/EBRAINS_eu/sta tus/1778398232084643994 Camelia Vasile, Ana Fota 10 EBRAINS Social media Other Social media promotion of the session “Research Infrastructures in a changing Global, Environmental & Socioeconomical context” Research communities Promotion of the Session about Socio-economical and environmental impact of RI's and presentation about Greening of Research Infrastructures. Social media Delivered Increased awareness of session’s key takeouts EBRAINS https://www.linkedin.com/po sts/ulpankudaibergenova_environment al-activity7204421516887826432tMSL?utm_source=share&utm _medium=member_desktop Ulpan Kudaibergenova 11 Informative GreenDIGIT article on SZTAKI’s website Choose an item News item on Project kick-off Choose an item research communities, general public Promoting the projekt Other Delivered Article on the webpage SZTAKI https://sztaki.hunren.hu/en/current/news/2024 /greendigit-horizon-europeproject-reducingenvironmental-footprintlaunches-hun 12 ITU-ETSI Symposium on ICT Sustainability: Standards Driving Environmental Innovation Conferences Research communities Empowering Sustainability: Energy Efficiency and Circular Design in ICT Event (conference, meeting, workshop, internet debate, round table, group discussion, etc.) Delivered Presentation about the GreenDIGIT project CNIT https://www.itu.int/en/ITUT/Workshops-andSeminars/2024/1211/Documen ts/Raffaele%20Bolla.pdf Raffaele Bolla, Martinelli Nicole Simone 13 EGI Inspired Magazine Other Magazine article Research communities Promoting the project Media article Delivered Brief presentation of the GreenDIGIT project EGI https://www.egi.eu/magazine /issue-2024-02/greendigitpioneering-sustainable-digitalservices-for-researchinfrastructures/ Gergely Sipos 14 EGI Newsletter Other Newsletter article Research communities Promoting the project Newsletter Delivered Presentation of the project kick-off EGI https://www.egi.eu/article/gr eendigit-project-kicks-off/ Gergely Sipos, Catalin Condurache 15 EBRAINS news item & newsletter article Other Website article, newsletter article Research communities Promoted the GreenDIGIT Design Workshop (23-24 January 2025) by showcasing the main takeouts Media article Delivered Increased awareness of the event, project and topics EBRAINS https://www.ebrains.eu/newsand-events/making-researchinfrastructures-moresustainable-ebrainsparticipated-in-the-greendigitdesign-workshop Camelia Vasile 16 EBRAINS news item & newsletter article Other Website article, newsletter article Research communities Promoted the All-hands meeting (30 September - 1 October 2024) by showcasing the main takeaways Media article Delivered Increased awareness of the event, project and topics EBRAINS https://www.ebrains.eu/newsand-events/greendigittowards-more-sustainabledigital-researchinfrastructures Camelia Vasile 17 EBRAINS Social media Other Social media – X, LinkedIn, Mastodon, Bluesky Research communities Promoted the GreenDIGIT Design Workshop (23-24 January 2025) Social media Delivered Raised awareness of the event, project and topics EBRAINS https://x.com/EBRAINS_eu/sta tus/1897256086773825735 Camelia Vasile 18 2 EBRAINS Social media posts Other Social media – X, LinkedIn, Mastodon, Bluesky Research communities Promoted the All-hands meeting (30 September - 1 October 2024) during and after the event Social media Delivered Raised awareness of the event, project and topics during and after the event EBRAINS https://x.com/EBRAINS_eu/sta tus/1858868550502412677; https://x.com/EBRAINS_eu/sta tus/1841458463647453676https ://x.com/EBRAINS_eu/status/1 841458463647453676 Camelia Vasile 19 EBRAINS Social media Other Social media – X, LinkedIn, Mastodon, Bluesky Research communities Promoted the first GreenDIGIT newsletter Social media Delivered Raised awareness of the newsletter, project and activities EBRAINS https://x.com/EBRAINS_eu/sta tus/1869772999857164295 Camelia Vasile 20 EBRAINS Social media Other Social media – X, LinkedIn, Mastodon, Bluesky Research communities Promoted EBRAINS’ participation in the EGI Foundation Annual Conference 2025 Social media Delivered Participated in dissemination activities at the GreenDIGIT booth EBRAINS https://x.com/EBRAINS_eu/sta tus/1933538196513525866 Andrea Bedorin, Camelia Vasile 21 EBRAINS Website news item Other Website article Research communities Promoted the main takeouts of the EGI2025 Conference in Santander Media article Delivered Raised awareness of the GreenDIGIT consortium’s efforts towards more sustainable RIs EBRAINS https://www.ebrains.eu/newsand-events/ebrainscontributed-to-greener-digitalresearch-at-egi2025conference-in-santander Andrea Bedorin, Camelia Vasile 22 EBRAINS newsletter Other Newsletter article Research communities Promoted the main takeouts of the EGI2025 Conference in Santander Newsletter Delivered Raised awareness of the GreenDIGIT consortium’s efforts towards more sustainable RIs EBRAINS Andrea Bedorin, Camelia Vasile Figure 16. List of Communication Activities. Copyright © 2025 GreenDIGIT | DELIVERABLE D10.3 – Dissemination report Period 1 Page 70 of 71 Table 7. Communication Activities Hyperlinks. No Hyperlink 1 https://www.tum.de/en/about-tum/goals-and-values/sustainability/sustainability-day-2024 2 https://www.linuxdays.cz/2024/ 3 https://collab.dvb.bayern/display/TUMtueisecevents/CoC+Industry+Day+2024 4 https://www.6g-platform.com/berlin-6g-conference/ 5 https://www.itu.int/en/ITU-T/Workshops-and-Seminars/2024/1211/Pages/default.aspx 6 - 7 - 8 https://www.ebrains.eu/projects/greendigit 9 https://x.com/EBRAINS_eu/status/1778398232084643994 10 https://www.linkedin.com/posts/ulpan-kudaibergenova_environmental-activity-7204421516887826432tMSL?utm_source=share&utm_medium=member_desktop 11 https://sztaki.hun-ren.hu/en/current/news/2024/greendigit-horizon-europe-project-reducing-environmentalfootprint-launches-hun 12 https://www.itu.int/en/ITU-T/Workshops-and-Seminars/2024/1211/Documents/Raffaele%20Bolla.pdf 13 https://www.egi.eu/magazine/issue-2024-02/greendigit-pioneering-sustainable-digital-services-for-researchinfrastructures/ 14 https://www.egi.eu/article/greendigit-project-kicks-off/ 15 https://www.ebrains.eu/news-and-events/making-research-infrastructures-more-sustainable-ebrains-participated-inthe-greendigit-design-workshop 16 https://www.ebrains.eu/news-and-events/greendigit-towards-more-sustainable-digital-research-infrastructures 17 https://x.com/EBRAINS_eu/status/1897256086773825735 18 https://x.com/EBRAINS_eu/status/1858868550502412677; Copyright © 2025 GreenDIGIT | DELIVERABLE D10.3 – Dissemination report Period 1 Page 71 of 71 https://x.com/EBRAINS_eu/status/1841458463647453676https://x.com/EBRAINS_eu/status/1841458463647453676 19 https://x.com/EBRAINS_eu/status/1869772999857164295 20 https://x.com/EBRAINS_eu/status/1933538196513525866 21 https://www.ebrains.eu/news-and-events/ebrains-contributed-to-greener-digital-research-at-egi2025-conference-insantander