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Poster: Defining agroecological routes using robots

Naim, Mohammad

Abstract

The poster presents the doctoral research of Mohammad Naim, conducted within the French national project NINSAR (New ItiNerarieS for Agroecology using cooperative Robots), and outlines how the thesis contributes to this broader research programme. The NINSAR project, as framed in the poster title and structure, is positioned as a national effort to define agroecological routes using robots, integrating technological innovation with ecological, social, and economic sustainability goals. Within this context, the thesis investigates how autonomous agricultural systems can be designed, evaluated, and adopted without compromising core agroecological principles. The thesis analyzes the transition from Agriculture 4.0 to Agriculture 5.0 through the thirteen agroecological principles defined by the High Level Panel of Experts, assessing how emerging robotic and data-driven systems can support more sustainable production models. It evaluates three major categories of robotic field operations (data collection, soil and crop management, and navigation/communication) and links them to four principle-level agroecological indicators, finding strong contributions to soil health and synergy and weaker support for recycling. The work also conducts an empirical study of French farmers using the Technology Acceptance Model 2, identifying perceived usefulness as the central predictor of adoption, complemented by ease of use and social influence. A complementary technical study clusters 71 agricultural robots into five functional categories, illustrating the increasing specialization of robotic platforms and cost differences between electric and endothermic systems. The thesis further extends to the economic and industrial dimension of the NINSAR project by engaging manufacturers through semi-structured interviews to construct business model canvases aimed at identifying viable pathways for scaling agroecological robots. Taken together, the poster shows that Naim’s thesis forms a core component of NINSAR by integrating agronomic, technological, social, and economic analyses to support the development of robotics aligned with agroecological transition goals.

Full text

NINSAR Project: Defining Agroecological Routes Using Robots Mohammad Naim* directed by Marco Medici & Loïc Sauvée with the appreciated contribution of Davide Rizzo (2,4) & Maryem Cherni (3) Research unit InTerACT (UP2018.CP102), UniLaSalle, Beauvais Introduction There is an ongoing transition toward a new human-centric agricultural system centered on Agroecology (AE) as a foundation for sustainable food production. Autonomous machinery, and particularly robots, offer promising solutions, but they must advance in precision, adaptability, and productivity, since challenges aren’t only in the technical capabilities of agricultural robots and automation but also in their integration with agroecological principles, farmers' acceptance of these technologies, and their presentation in the market. •A review that examines the shift from Agriculture 4.0 to Agriculture 5.0. •It assesses this transition through the 13 agroecological principles defined by the HLPE (2019): recycling, input reduction, soil health, animal health, biodiversity, synergy, economic diversification, co-creation of knowledge, social values and diets, fairness, connectivity, land and natural resource governance, and participation. •The study explores how technological innovation, automation, and data-driven systems can align with agroecological principles to enhance sustainability and resilience. •Findings highlight the potential of Agriculture 5.0 to promote a more equitable, human-centric, and ecologically balanced agricultural model. •Technology Acceptance Model 2 (TAM2), an extension of the Theory of Reasoned Action, was selected and adapted to investigate farmers’ adoption of robotic technologies, focusing on factors such as perceived usefulness and ease of use. •Findings revealed that French farmers’ intention to adopt robots was strongly driven by Perceived Usefulness, with ease of use providing additional support. •Social influence, particularly through Subjective Norm shaping Image, played a secondary but meaningful role, while Job Relevance, Output Quality, and Result Demonstrability significantly impacted Perceived Usefulness, highlighting the importance of demonstrating clear, tangible benefits. •These results validated TAM2 in the context of agricultural robotics and suggested that adoption strategies should focus on communicating concrete performance gains, improving usability, and leveraging peer networks to foster positive perceptions. 1 2 3 4 •A study that analyzes three key types of robotic operations in agriculture: data collection, crop and soil management, and navigation and communication. •These operations are evaluated through four field agroecological principles: biodiversity, synergy, recycling, and soil health. •Results demonstrate that soil health and synergy are the most animated principles in current robotic applications, while recycling is the least represented. •Considering factors and drivers identified in the previous tasks, research will involve semi-structured interviews with agricultural robots’ manufacturers to gather detailed information on their value capture and creation. •The interviews will be used to populate a Business Model Canvas, following Osterwalder’s 9-block framework. •The study will adopt Eisenhardt’s methodology combined with cross-case analysis to systematically compare manufacturers. •The resulting Business Model Canvas will cover all nine blocks: Customer Segments, Value Propositions, Channels, Customer Relationships, Revenue Streams, Key Resources, Key Activities, Key Partnerships, and Cost Structure. 5 •A study that clusters 71 agricultural robots based on variables including dimensions, energy source, price, and agricultural operations. •Five distinct categories are identified: Multifunctional, Heavy-Duty Tillers, Weeding & Monitoring, Field Weeders, and Large-Scale Harvesters. •Findings highlight the specialization of robots designed to address specific agricultural needs. •It was shown that robots with endothermic engines are generally more expensive than electric robots. This communication poster is licensed under a CC BY 4.0 license. * Research questions 1. To what extent the modern agricultural revolution animates AE principles? 2. How can robots be integrated into agricultural operations/practices without compromising AE principles? 3. What factors influence the acceptance and adoption of agricultural robots by French Farmers? 4. What sustainable business models can be developed to support the implementation and scaling of agricultural robots? Funders & collaborators