scieee Science in your language
[en] (orig)

Measurement and Analysis of 4G/5G Mobile Signal Coverage in a Heavy Industry Environment

Abstract

In the evolving landscape of Industry 4.0, the integration of advanced wireless technologies into manufacturing processes holds the promise of unprecedented connectivity and efficiency. In particular, the data transmission in a heavy industry environment needs stable connectivity with mobile operators. This paper deals with the performance study of 4G and 5G mobile signal coverage within a complex factory environment. For this purpose, a cost-effective and portable measurement setup was realized and used to provide long-term measurement campaigns monitoring and recording several key parameter indicators (KPIs) in 4G/5G downlink and upload. To support the reproducibility of the provided study and other research activities, the measured dataset is publicly available for download. Among others findings, the obtained results show how the performance of 4G/5G is influenced by a heavy industry environment and of the time of day on the network load.

Read accessible full text

Measurement and Analysis of 4G/5G Mobile Signal Coverage in a Heavy Industry Environment

Author: Polák, Ladislav; Kufa, Jan; Šotner, Roman; Frýza, Tomáš
Publisher: MDPI
Year: 2024
DOI: 10.3390/s24082538
Source: https://dspace.vut.cz/bitstreams/4d29706b-465a-4018-aa1d-f2928361eede/download
Ci a ion: Polak, L.; Ku a, J.; So ne , R.;
F yza, T. Measu emen and Analysis
o 4G/5G Mobile Signal Co e age in a
Hea y Indus y En i onmen . Senso s
2024,24, 2538. h ps://doi.o g/
10.3390/s24082538
Academic Edi o : You an Hu
Recei ed: 29 Feb ua y 2024
Re ised: 11 Ap il 2024
Accep ed: 12 Ap il 2024
Published: 15 Ap il 2024
Copy igh : © 2024 by he au ho s.
Licensee MDPI, Basel, Swi ze land.
This a icle is an open access a icle
dis ibu ed unde he e ms and
condi ions o he C ea i e Commons
A ibu ion (CC BY) license (h ps://
c ea i ecommons.o g/licenses/by/
4.0/).
senso s
A icle
Measu emen and Analysis o 4G/5G Mobile Signal Co e age in
a Hea y Indus y En i onmen
Ladisla Polak *,† , Jan Ku a †, Roman So ne †and Tomas F yza †
Depa men o Radio Elec onics, Facul y o Elec ical Enginee ing and Communica ion, B no Uni e si y
o Technology, Technicka 3082/12, 616 00 B no, Czech Republic; [email p o ec ed] (J.K.); [email p o ec ed] (R.S.);
[email p o ec ed] (T.F.)
*Co espondence: [email p o ec ed]
†These au ho s con ibu ed equally o his wo k.
Abs ac : In he e ol ing landscape o Indus y 4.0, he in eg a ion o ad anced wi eless echnolo-
gies in o manu ac u ing p ocesses holds he p omise o unp eceden ed connec i i y and e iciency.
In pa icula
, he da a ansmission in a hea y indus y en i onmen needs s able connec i i y wi h
mobile ope a o s. This pape deals wi h he pe o mance s udy o 4G and 5G mobile signal co e age
wi hin a complex ac o y en i onmen . Fo his pu pose, a cos -e ec i e and po able measu emen
se up was ealized and used o p o ide long- e m measu emen campaigns moni o ing and eco ding
se e al key pa ame e indica o s (KPIs) in 4G/5G downlink and upload. To suppo he ep oducibil-
i y o he p o ided s udy and o he esea ch ac i i ies, he measu ed da ase is publicly a ailable
o download. Among o he s indings, he ob ained esul s show how he pe o mance o 4G/5G is
in luenced by a hea y indus y en i onmen and o he ime o day on he ne wo k load.
Keywo ds: 4G; 5G; co e age mapping; indus ial ac o y; key pe o mance indica o s;
mobile ne wo ks
1. In oduc ion
In he e a o Indus y 4.0, he seamless in eg a ion o ad anced echnologies has
become essen ial o he e icien unc ioning o mode n manu ac u ing acili ies. A he
hea o his in eg a ion lies he eliance on obus and eliable mobile communica ion
ne wo ks, pa icula ly he g adual ansi ion om ou h o i h gene a ion (4G and 5G)
echnology. As ac o ies emb ace he connec i i y and speed p omises o 5G ne wo ks,
he e a ises an impe a i e need o assess and op imize mobile signal co e age wi hin hese
dynamic and o en complex en i onmen s [1–6].
“Sma ” ac o ies, bu also adi ional manu ac u ing acili ies and indus ial com-
plexes, necessi a e a mo e sui able echnical pla o m capable o handling a high olume o
da a, such as ha ob ained om a ious senso s, while ensu ing high eliabili y. In pu sui
o his goal, mobile and/o wi eless ne wo ks play a c ucial ole. As hese ne wo ks gain
ac ion, unde s anding aspec s such as signal co e age, eliabili y, and capaci y becomes
pa amoun o pe o mance op imiza ion and seamless connec i i y in demanding en i on-
men s, like ac o ies wi h a complex en i onmen (e.g., hea y indus y). The measu emen
and moni o ing o 4G/5G mobile signal co e age inside a ac o y eme ge as c i ical con-
side a ions o ensu ing seamless communica ion and connec i i y. O en, p o essional
ha dwa e (HW) equipmen and so wa e (SW) ools a e equi ed o acili a e da a collec ion
and analysis. Mo eo e , da ase s om hese measu emen s a e no always comple e o
publicly a ailable, hinde ing he ep oducibili y o analyses o hei use o op imizing
mobile connec ions in o he ac o y se ings [4].
In his pape , we in oduce a cos -e ec i e measu emen se up ha enables us o
conduc an ex ensi e analysis o 4G/5G mobile signal co e age in a complex ac o y
en i onmen . Ou app oach aims o p o ide comp ehensi e insigh s in o mobile signal
co e age wi hin such a unique ansmission en i onmen .
Senso s 2024,24, 2538. h ps://doi.o g/10.3390/s24082538 h ps://www.mdpi.com/jou nal/senso s
Senso s 2024,24, 2538 2 o 18
Fu he mo e, o acili a e he ep oducibili y o ou analysis and suppo u u e e-
sea ch endea o s, we ha e made he comple e da ase publicly a ailable. This da ase
includes de ailed measu emen s and obse a ions, allowing o he esea che s o alida e
ou indings and explo e addi ional op imiza ion s a egies o mobile connec i i y in
simila ac o y en i onmen s.
This pape is s uc u ed as ollows. Sec ion 2p esen s an o e iew o he s a e o
he a and de ines he main con ibu ions o his wo k. Sec ion 3in oduces he c ea ed
measu emen sys em and p o ides insigh s in o he indoo en i onmen o he ac o y
whe e he long- e m measu emen campaigns we e conduc ed. The analysis and discussion
o he ob ained esul s a e p esen ed in Sec ion 4. This pape is concluded in Sec ion 5.
2. Rela ed Wo ks and O iginal Con ibu ion
In ecen yea s, nume ous wo ks ha e in es iga ed 4G/5G mobile signal co e age in
a ious indoo and ou doo en i onmen s [
3
–
14
]. Howe e , conduc ing such s udies in
ha sh o hea y indus y en i onmen s has ecei ed compa a i ely less a en ion.
Haq e al. [
3
] p esen he indings o a s udy ocusing on cus ome sa is ac ion
based on 3G/4G ne wo k pe o mance in he Punjab egion o Pakis an. Thei s udy
examines a ious aspec s such as ne wo k co e age, cus ome se ices, quali y o ideo
calls, and download speed. Howe e , de ails ega ding he ansmission en i onmen s
(indoo and ou doo ) a e no p o ided, and he ob ained da ase is no accessible.
The s udy p esen ed by El-Saleh e al. [
4
] p o ides comp ehensi e mobile co e age
measu emen s conduc ed in bo h indoo and ou doo u ban a eas o Malaysia. Da a, com-
ing om i e mobile ope a o s suppo ing 3G and 4G echnologies, we e collec ed h ough
d i e es s. The esul s we e e alua ed in e ms o key pe o mance indica o s (KPIs),
comple ed by pe o mance me ics such as h oughpu , ping, and hando e . The indings
con i med he necessi y o mobile ope a o s o enhance da a a es o acili a e high-speed
ansmission and low-la ency communica ions. Howe e , i is un o una e ha he da ase
o u he esea ch analysis is no a ailable.
Rod iguez e al. [
5
] p oposed an expe imen al amewo k o in eg a ing 5G wi eless
sys ems in o indus ial applica ions. The amewo k was es ed in a eal small-scale indus-
ial ac o y en i onmen called he “Aalbo g Uni e si y 5G Sma P oduc ion Lab”. Du ing
he es s, o e 100,000 samples we e collec ed o p o ide s a is ical-based pe o mance
analysis, ocusing on da a a ic and packe in e -a i al imes; while he s udy p o ides
aluable insigh s, i does no gi e signi ican a en ion o in es iga ing he in luence o
he ansmission en i onmen on he moni o ed sys em pa ame e s. In [
7
], esea che s
conduc ed a simila expe imen using he same indus ial en i onmen , his ime ocusing
on he pe o mance o Wi eless Fideli y (Wi-Fi) o Indus ial In e ne -o -Things (IIoT).
They u ilized a comme cial en e p ise-g ade Wi-Fi 6 sys em o collec da a on pa ame e s
such as Recei ed Signal S eng h Indica o (RSSI), ound- ip ime (RTT), and hando e .
The esul s highligh ed ha he loca ion o access poin s (APs) and di e en indus ial
scena ios can ha e a signi ican in luence on he alues o he moni o ed pa ame e s.
In [
8
], Rekopu a e al. examined he pe o mance o he 5G ne wo k in he Indus y 4.0
Implemen a ion Cen e (NTUST), ocusing on pa ame e s such as ne wo k speed, la ency,
ji e , and packe loss a e. To conduc his analysis, ad anced measu emen equipmen was
employed, allowing o up o 100 use s in a i ual en i onmen . The s udy emphasized he
impo ance o he echnology used in he wi eless ne wo k, such as Wi-Fi 6 and E he ne ,
o enabling a sma ac o y en i onmen .
Lyczkowski e al. [
9
] p esen ed a measu emen -based pe o mance compa ison be-
ween a p i a e Long-Te m E olu ion (LTE) ne wo k and an IEEE 802.11b/g/n ne wo k
deployed in an au omo i e ac o y. The measu emen s ocused on moni o ing se e al KPIs
while p oduc ion was ongoing. Howe e , de ails abou he ac o y en i onmen a e no
p o ided, and he da ase is no publicly a ailable. Based on he esul s, he LTE-based
ne wo k demons a es signi ican ad an ages o e he WLAN-based solu ion o ac o y
au oma ion use cases.
Senso s 2024,24, 2538 3 o 18
Schmiede e al. [
10
] and Mi e al. [
11
] conduc ed channel cha ac e iza ion s udies in
indoo indus ial en i onmen s, speci ically, a high-p ecision machining wo kshop hall and
a sma wa ehouse, espec i ely, u ilizing he 28 GHz millime e wa e bands. Thei analyses
included he examina ion o pa h loss and powe delay p o iles. The indings e ealed he
unique na u e o hese indus ial en i onmen s in e ms o wi eless communica ion.
Raida e al. [
12
,
13
] epo ed comp ehensi e and long- e m measu emen s o a
4G-based
LTE ne wo k, conduc ed in Aus ia, encompassing bo h indoo and ou doo en i onmen s.
The s udies include a de ailed analysis and e alua ion o he measu ed da a. Impo an ly,
he da ase esul ing om hese measu emen s is publicly a ailable. The au ho s o bo h
s udies ha e indica ed ha hei da ase can be u ilized o esea ch pu poses o by mobile
ope a o s o op imize he sampling p ocess and measu emen du a ion o KPIs. The analy-
sis o he esul s e ealed he impac o a ious ansmission condi ions, such as wea he
condi ions like ain, on he s abili y o ce ain KPI measu emen s.
In [
14
], Mahmud e al. conduc ed an analysis o 4G/5G ne wo ks, ocusing on pa-
ame e s such as o al ecei ed da a, packe losses, and e- ansmissions. The s udy p e-
dominan ly elied on simula ions and cen e ed on e alua ing he pe o mance o di e en
schedule s u ilized in 4G/5G ne wo ks. One o he key indings o his s udy is he es ablish-
men o a di ec ela ionship be ween signal- o-in e e ence and a io (SINR), h oughpu ,
and packe losses measu ed a he use equipmen (UE).
2.1. Summa izing
F om he b ie o e iew p esen ed abo e, we can conclude he ollowing:
1.
Ex ensi e and long- e m measu emen -based s udies o 4G/5G mobile signal co e -
age in complex (hea y) ac o y en i onmen s ha e no been epo ed so a ; while
s udies such as [
5
,
7
] ha e explo ed simila opics o 5G and Wi-Fi sys ems, hey we e
conduc ed in uni e si y-based small-scale indus ial ac o y en i onmen s.
2.
The s udies p ima ily ocus on moni o ing and analyzing selec ed KPIs. Addi ionally,
he in luence o key en i onmen al ci cums ances, such as he ime o day on ne wo k
load and on he quali y o adio connec ions in wi eless communica ions, is o en no
ho oughly in es iga ed.
3.
In nume ous cases, da ase s om measu emen s a e no publicly a ailable, hinde ing
he ep oducibili y o ex ension o he esea ch. Comple e da ase s a e only open in
wo ks [
12
,
13
,
15
]. Howe e , hese da ase s a e ob ained om measu emen campaigns
in non- ac o y en i onmen s.
2.2. O iginal Con ibu ion
The main con ibu ions o his pape a e as ollows:
1.
We p opose a simple and cos -e ec i e ha dwa e (HW) se up ha enables long-
e m and epea able measu emen o KPIs o 4G/5G mobile signals. The measu ed
pa ame e s can be sa ed and p ocessed o line (a pa o hem online). Addi ionally,
ou concep allows use s o emo ely connec o he measu emen equipmen o
change measu emen con igu a ions o send (sa e) da a. The equipmen used is
cha ac e ized by i s small size, po abili y, and emo e connec ion capabili y.
2.
We conduc ed an ex ensi e KPI-based pe o mance s udy o 4G/5G mobile ne wo ks,
ocusing speci ically on mobile signal co e age wi hin a hea y indus y en i onmen .
We explo ed he po en ial o 4G/5G mobile ne wo ks o da a ansmission in such
a challenging ansmission en i onmen . De ailed measu emen campaigns we e
conduc ed a a ious loca ions wi hin he ac o y, loca ed in he Czech Republic,
p o iding insigh s in o 4G/G5 ne wo k pe o mance.
3.
To p omo e he ep oducibili y o ou analysis and suppo u u e esea ch endea o s,
pa icula ly in he ield o a i icial in elligence, we made he ull da ase publicly
a ailable. Ou wo k p o ides a la ge public da ase comp ising eal-wo ld measu e-
men s cap u ed a mul iple loca ions wi hin he ac o y en i onmen . The da ase is
openly accessible on Gi Hub [16].
Senso s 2024,24, 2538 4 o 18
3. Measu emen in he Fac o y En i onmen
In his sec ion, we in oduce ou measu emen equipmen and desc ibe he measu e-
men me hodology, as well as he me ics and so wa e (SW) ools used o se up ou
pe o mance e alua ion o 4G/5G mobile signal co e age in a ha sh ac o y en i onmen .
The p oposed concep is designed o allow epea able and au oma ed measu emen s. I can
be used o measu ing 4G/5G signal quali y me ics in a ious en i onmen s, no limi ed
o ac o y se ings, and is independen o he ime o day.
3.1. 4G and 5G Mobile Ne wo ks in he Czech Republic
As men ioned, he measu emen campaigns we e conduc ed in a ac o y loca ed in
he Czech Republic. P esen ly, mobile ope a o s in he Czech Republic suppo 2G, 4G,
and 5G mobile sys ems. In he case o 5G, ope a o s deploy 5G ne wo ks using a ious
adio equency (RF) bands wi hin F equency Range 1 (FR1). Speci ically, he ollowing
RF bands a e u ilized: 700 MHz (5G), 800 MHz (4G), 1800 MHz (4G and 5G), 2100 MHz
(4G and 5G)
, and 3500 MHz (5G) [
17
]. These RF bands we e selec ed based on hei echnical
cha ac e is ics and co e age op imiza ion. I is c ucial o no e ha all ealized 5G adio
access ne wo ks (RANs) a e in eg a ed wi h exis ing 4G ne wo ks, ope a ing unde non-
s andalone (NSA) a chi ec u e. This in eg a ion allows o seamless connec i i y and
enables a smoo h ansi ion o 5G echnology while le e aging he exis ing in as uc u e
o 4G ne wo ks [18].
The 700 MHz and 800 MHz RF bands a e ideal o wide co e age and pene a ion
in o indoo spaces. These RF bands a e sui able o achie ing ex ensi e a ea co e age and
op imizing signals in challenging en i onmen s wi h physical obs acles. Ope a o s u ilize
a bandwid h o 10 MHz in his RF band. The 1800 MHz RF band o e s mobile ope a o s
he abili y o p o ide highe da a a es and is op imal o u ban a eas wi h highe use
de ice densi y. In his case, ope a o s u ilize a bandwid h o 20 MHz, enabling e icien
da a ansmission in a eas wi h inc eased demand o b oadband connec i i y. To es ablish
mobile connec ions in s a egically signi ican u ban a eas and loca ions wi h high demand
o b oadband connec i i y, ope a o s employ he 2100 MHz and 3500 MHz RF bands.
In he 2100 MHz and 3500 MHz RF bands, ope a o s u ilize a bandwid h o 20 MHz and
40 MHz, espec i ely.
3.2. Ha dwa e Se up
The block diag am o he p oposed measu emen sys em and a pho o o he measu e-
men boa d used o collec da a o analyzing 4G/5G ne wo k pe o mance a e depic ed in
Figu e 1. The measu emen se up included an
HP P oDesk 400 G6
mini pe sonal compu e
(PC) [
19
] unning he Windows 11 ope a ing sys em. A cus om-buil sc ip , ope a ing
wi h AT commands o communica ion and da a collec ion, was u ilized o in e ace wi h
he modem, ensu ing po able and au oma ed measu emen s. The PC was con igu ed
o au oma ically powe on when connec ed o he powe g id, s eamlining he s a up
p ocess. Addi ionally, in he e en o a powe ailu e, he sys em was p og ammed o
au oma ically es a , ensu ing con inuous ope a ion. A Py hon p og am was c ea ed o
ou measu emen s. I s a ed au oma ically upon PC s a up and conduc ed comp ehensi e
measu emen s o all pa ame e s.
The RM502QAEAA-M20-SGASA module om Quec el was u ilized o measu ing 4G
and 5G mobile connec i i y. De ailed pa ame e s o he module can be ound on he en-
do ’s websi e [
20
]. The module was inse ed in o he manu ac u e ’s de elopmen boa d,
designa ed as PCIECARDEVB-KIT [
21
]. In ou measu emen con igu a ion, he module
was connec ed o ou b oadband omnidi ec ional an ennas designed o mobile se ices,
each wi h a gain o 5 dBi. This con igu a ion enabled suppo o 4
×
4 Mul iple Inpu
Mul iple Ou pu (MIMO). To ensu e easy po abili y and p o ec ion agains damage o
bo h he de elopmen boa d and he RM502QAEAA module, a simple box was c ea ed
using a 3D p in e , as depic ed in Figu e 1b.
Senso s 2024,24, 2538 5 o 18
PCIECARDEVB -KIT
An ennas
PC wi h Windows
and Team Viewe
Da a & Powe
USB 3.0
a b
Figu e 1. The measu emen equipmen : (a) he block diag am o he p oposed measu emen sys em,
(b) he measu emen boa d used o collec da a o analyzing 4G/5G ne wo k pe o mance.
3.3. Measu ed Pa ame e s
Ou pe o mance e alua ion aimed o cha ac e ize and e alua e 4G/5G mobile con-
nec i i y in a ac o y en i onmen comp ehensi ely. To achie e his, we measu ed all
s a ic and dynamic pa ame e s suppo ed by he RM502QAEAA-M20-SGASA module.
The s a ic pa ame e s measu ed, among o he s, included he RF band on which he ope a o
ansmi s, he bandwid h used, and he name and loca ion o he ansmi e . The dynamic
pa ame e s, known as KPIs, a e c ucial objec i e measu es o e alua ing signal quali y in
mobile ne wo ks [
12
]. Each o hese pa ame e s p o ides in o ma ion abou di e en as-
pec s o he signal and i s ecep ion [
22
,
23
]. Below a e he de ini ions and b ie desc ip ions
o he conside ed 4G/5G signal quali y indica o s:
•
Recei ed Signal S eng h Indica o (RSSI)—RSSI ep esen s he cumula i e signal
s eng h ecei ed a he de ice’s an ennas, ega dless o he signal’s speci ic sou ces.
Measu ed in dBm, i conside s he o e all incoming signal s eng h, encompassing
neighbo ing base s a ions’ signals, in e nal and ex e nal in e e ence, and ambien
noise. A highe RSSI alue indica es s onge signal s eng h.
•
Re e ence Signal Recei ed Powe (RSRP)—RSRP quan i ies he signal s eng h
ecei ed om he p esen base s a ion in a mobile ne wo k. Measu ed in dBm, i s
alue emains independen o channel wid h and does no conside spu ious signals
o in e e ence. A lowe RSRP alue indica es a weake signal s eng h.
•
Re e ence Signal Recei ed Quali y (RSRQ)—RSRQ, a quan i a i e pa ame e in-
oduced by he 3GPP conso ium [
23
], se es as an indica o o he quali y o pilo
signals ecei ed om he cu en base s a ion. I is calcula ed using RSSI and RSRP
alues. A highe RSRQ alue (measu ed in dB) co esponds o supe io signal quali y.
•
Signal- o-In e e ence plus Noise Ra io (SINR)—SINR is calcula ed as he a io
be ween he ecei ed signal and he combined in e e ence and ex e nal noise in he
mobile ne wo k. I is employed o measu e signal quali y, deno ed in uni s o dB.
A highe SINR alue indica es supe io signal quali y.
•
Channel Quali y Indica o (CQI)— he dimensionless nume ic alue CQI se es as
an indica o o channel quali y o he base s a ion. U ilized o adap i e modula ion
and coding, CQI acili a es he adjus men o ansmission a e and e iciency based
on signal quali y. Repo ed alues o CQI ange om 0 o 15, e lec ing he le el o

Senso s 2024,24, 2538 6 o 18
modula ion and coding he UE could employ. Highe CQI alues signi y a o able
condi ions in he ansmission channel, sugges ing he po en ial o achie ing highe
ansmission a es.
In 4G ne wo ks, he u ilized module was capable o measu ing he ollowing pa am-
e e s: RSRP, RSRQ, RSSI, SINR, and CQI. Howe e , in 5G ne wo ks, he modem only
suppo ed he measu emen o pa ame e s RSRP, SINR, and RSRQ. The limi alues o KPIs
indica ing he signal quali y in an RF channel a e p o ided in Table 1. In his wo k, we do
no dis inguish be ween he limi alues o 4G and 5G signal quali y [
24
,
25
]. Analyzing
he co ela ion be ween KPIs (i.e., unde s anding how changes in one KPI may a ec
o he s) p o ides aluable insigh s in o he quali y and pe o mance o a cellula ne wo k.
Fo ins ance, highe RSRP alues ypically co espond o highe RSSI alues, indica ing a
s ong o e all signal s eng h. Highe SINR alues gene ally lead o highe CQI alues,
indica ing be e channel quali y and po en ial o highe da a h oughpu .
Table 1. Limi alues o he KPIs indica ing he condi ions in he RF channel [24,26].
Me ic Excellen Good Mode a e Bad
RSSI >−65 dBm −65 o −75 dBm −75 o −85 dBm <−85 dBm
RSRP >−80 dBm −80 o −90 dBm −90 o −100 dBm <−100 dBm
RSRQ >−10 dB −10 o −15 dB −15 o −20 dB <−20 dB
SINR >20 dB 13 o 20 dB 0 o 13 dB <0 dB
CQI 13 o 15 10 o 13 6 o 10 1 o 6
In addi ion o esponse ime measu emen s, h oughpu and la ency o da a ansmis-
sion we e also measu ed. Th oughpu e e s o he da a ans e a e measu ed in bi s pe
second (bps) in ei he uplink (UL) o downlink (DL) communica ion. La ency, on he o he
hand, e e s o he ime i akes o da a o a el om he sou ce o he des ina ion and
back o he sou ce. I is ypically measu ed in milliseconds (ms). These me ics p o ide
aluable insigh s in o he e iciency and esponsi eness o he ne wo k.
Response ime measu emen s we e conduc ed on wo di e en comme cial se e s
belonging o majo sea ch p o ide s: www.Google.com (accessed on 4 Feb ua y 2024)
and www.Seznam.cz (accessed on 4 Feb ua y 2024) (sea ch engine in he Czech Republic).
The pu pose o using hese se e s was o iden i y po en ial issues wi h he mobile con-
nec i i y. Consis en ly highe esponse imes o one se e compa ed o he o he wi hin
a speci ic ime ame could indica e a signi ican load on ha pa icula se e . Howe e ,
hese measu emen s alone do no p o ide insigh s in o he esponse ime o ou mobile
ne wo k. Consis en esponse imes ac oss bo h se e s indica e he esponsi eness o ou
ne wo k, wi hou e ealing po en ial anomalies caused by se e o e load, whe he due o
no mal a ic o a dis ibu ed denial o se ice (DDoS) a ack. Mo eo e , i one se e was
a ailable while he o he was no , i would sugges a se e ou age. Con e sely, i bo h
se e s we e down, i would likely indica e a dis up ion in ou mobile connec i i y.
3.4. Fac o y-Measu emen En i onmen
The measu emen campaigns we e conduc ed in he ac o y o Tajmac-ZPS, a.s. [
27
],
loca ed in Zlín, Czech Republic. Tajmac-ZPS, a.s. is a leading company engaged in he
de elopmen , p oduc ion, and sale o machine ools. The company boas s a comp ehensi e
acili y, including a ound y si ua ed di ec ly on he p oduc ion p emises in Zlín, enabling
hem o co e all s ages o machine de elopmen and p oduc ion, s a ing om mechanical
d awing, designing, p oduc ion o models and cas ings, hei ea men and machining,
and up o he inal assembly. F om he pe spec i e o wi eless communica ion, he ac o y
en i onmen p esen s challenging condi ions o da a ansmission, cha ac e ized by ac o s
such as mul ipa h p opaga ion, noise, and a high olume o mo ing people [
28
]. These
ac o s con ibu e o a ich en i onmen o assessing he pe o mance o wi eless ne wo ks
in eal-wo ld indus ial se ings.
Senso s 2024,24, 2538 7 o 18
The measu emen s we e conduc ed a Tajmac-ZPS, a.s. in h ee o i s halls. Figu e 2
illus a es he dis ibu ion o indi idual measu ing poin s and ansmi e s ia an ae ial
iew. The uppe hal o he pic u e displays he company p emises, while he lowe hal de-
pic s a la ge shopping mall whe e he ansmi e s, Base T anscei e S a ion—BTS (E ol ed
Node B—eNB o Nex Gene a ion Node B—gNb) [
18
,
29
]—we e si ua ed. The dis ance
be ween he eNB/gNb and ou measu emen poin s anged be ween 400 and 450 me e s.
This a ea was exclusi ely co e ed by 5G cellula ne wo ks ope a ing a 700 MHz. Based on
he cu en quali a i e pa ame e s o he RF signal, he measu emen de ice au oma ically
selec ed he eNB/gNb o connec o. Th oughou he measu emen s, we we e connec ed o
wo ansmi e s, as depic ed in Figu e 2. No ably, no hando e s we e obse ed du ing
he measu emen campaign a indi idual loca ions. T ansi ions o di e en ansmi e s
occu ed only wi h a change o loca ion and a subsequen e-connec ion o he ne wo k.
The indoo en i onmen o he ac o y is depic ed in Figu e 3. The 4G/5G connec i i y
measu emen s we e ca ied ou a six measu emen loca ions inside he ac o y, and a b ie
desc ip ion along wi h an illus a i e pho o is a ailable in Table 2.
Figu e 2. Fac o y: map iew wi h measu emen poin and ansmi e s.
Figu e 3. Inside o he ac o y in which he measu emen campaigns we e conduc ed [27].
Senso s 2024,24, 2538 8 o 18
Table 2. Desc ip ion o he measu emen places. The ed a ows indica e he loca ion o he measu e-
men equipmen .
Place and
Da e o Measu emen Pho o Desc ip ion
Place 1
(9–13 Ma ch 2023)
The measu emen was
conduc ed in he o ice loca ed
in hall numbe 3.
The measu emen equipmen
was posi ioned on he
opposi e side o he hall om
he ansmi e . This hall
se es as a ansshipmen
cen e o p oduc s.
Place 2
(15–19 Ma ch 2023)
The measu emen was
conduc ed in he o ice loca ed
in hall numbe 2.
The measu emen equipmen
was posi ioned on op o he
elec ical panel.
Place 3
(22–26 Ma ch 2023)
The measu emen was
conduc ed inside he me al
cell in hall 1, which houses he
company’s
p oduc ion acili ies.
Place 4
(29 Ma ch–3 Ap il 2023)
The measu emen was
conduc ed in hall numbe 1,
wi hin he me al cabine
si ua ed be ween he
p oduc ion a eas.
Place 5
(8–12 Ap il 2023)
The measu emen was
conduc ed in hall numbe 1,
wi hin he shee me al cabine
loca ed a he p oduc ion cell.
Place 6
(22–26 Ap il 2023)
The measu emen was
conduc ed in hall numbe 1,
inside he b ick shed loca ed
wi hin he hall.
The measu emen equipmen
was placed on a shel a a
heigh o 1 me e .
Senso s 2024,24, 2538 9 o 18
3.5. Measu emen P ocedu e
The 4G/5G connec i i y measu emen s we e ca ied ou a six measu emen loca ions
inside he ac o y. Loca ions wi hin he co po a e en i onmen whe e p e-exis ing Wi-Fi
ecep ion issues we e encoun e ed we e s a egically selec ed. This delibe a e choice is
cen al o gaining a deepe unde s anding o he impac o ou 5G in as uc u e in egions
s uggling wi h Wi-Fi ecep ion issues. The expec a ion is ha loca ions wi h Wi-Fi issues
a e mo e likely o encoun e po en ial hu dles in ecei ing 5G signals.
De ailed esul s om he measu emen s a e p esen ed o a span o 5 days, o ganized
in he ollowing o de : Thu sday, F iday, Sa u day, Sunday, and Monday. This app oach
enables he obse a ion o he in luence o bo h wo king and non-wo king days, and also
he impac o so-called weekdays- o-weekends and weekends- o-weekdays on he mea-
su emen esul s. A lowcha o he measu emen me hodology is shown in Figu e 4.
The measu emen s hemsel es we e conduc ed using AT commands, h ough which objec-
i e pa ame e s desc ibed in Sec ion 3.3 we e measu ed. The alues o hese pa ame e s
we e eco ded e e y 15 s.
S a o PC
Wai
60 seconds
S a o
P og am
Measu e o Ping
(Se e 1 & 2)
Measu e o 4G &5G
Pa ame e s
O e 30
minu es?
Measu e he In e ne
Connec ion Speed
Yes
No
Connec o
he Ne wo k
Sa e he Resul s
( x file)
Wai
15 seconds
Figu e 4. Flowcha o he measu emen me hodology.
The esponse o he web se e was measu ed di ec ly om he modem using AT
commands. Addi ionally, he measu emen o In e ne speed in bo h di ec ions was pe -
o med a hal -hou ly in e als. Howe e , i is impo an o no e ha his measu emen
equency is illus a i e only, as i was limi ed due o he Fai Use Policy (FUP) da a
limi applied o he SIM ca d by he ope a o (T-Mobile). The in as uc u e o he mobile
ope a o T-Mobile was u ilized o he measu emen s, conduc ed using he well-known
se e www.speed es .ne (accessed on 4 Feb ua y 2024). All measu emen s we e con-
Senso s 2024,24, 2538 16 o 18
a b
Figu e 11. Se e esponse dis ibu ion unc ion o (a)Google se e and (b)Seznam se e .
5. Conclusions
This pape ocused on on analyzing he 4G and 5G cellula signal co e age, h ough
long- e m measu emen campaigns conduc ed in a complex ac o y en i onmen . To
achie e his goal, we p oposed and implemen ed a simple and po able measu emen se up
along wi h an app op ia e measu emen me hodology.
Du ing he measu emen s, no signi ican e en s we e obse ed ha signi ican ly
a ec ed he adio da a ansmission o e he 5G ne wo k. This sugges s ha he 5G sys em
is qui e obus and esis an o in e e ence om indus ial ope a ions wi hin he ac o y.
Wi h he excep ion o Place no. 2, whe e signal s eng h was weak, he sys em emained
connec ed o he 5G ne wo k a all imes. In cases whe e 5G connec i i y ailed, he sys em
seamlessly swi ched o he 4G ne wo k, ensu ing con inuous connec i i y wi hou any
comple e loss o se ice. Du ing he measu emen s, he sys em consis en ly ope a ed wi hin
he n28 band, co esponding o a equency o 700 MHz, wi hou any changes in equency
band obse ed. Addi ionally, he e we e no ins ances o he sys em swi ching om one
ansmi e o ano he du ing he measu emen s a indi idual si es. The only occu ence o
swi ching ansmi e s was when he de ice was mo ed o a di e en measu emen si e
and powe ed back on.
The obse ed changes in signal s eng h and quali y be ween nigh and day a e
likely due o a ia ions in he numbe o de ices connec ed o he ansmi e , a he
han changes in a ic o in e e ence wi hin he indus ial plan . These luc ua ions a e
no iceable e en du ing weekends, indica ing ha hey a e no solely ela ed o weekday
ac i i y. The ansmi e s, loca ed in la ge shopping malls, expe ience high use connec i i y
du ing weekdays and weekends bu signi ican ly ewe use s a nigh . Addi ionally,
he e was a no able di e ence o app oxima ely 20 dB in signal s eng h be ween he
loca ion wi h he highes and lowes signal s eng hs, despi e bo h loca ions being simila ly
dis an om he ansmi e . This sugges s ha he ecei e ’s loca ion wi hin he building
signi ican ly in luences he ecei ed signal s eng h. The e a e se e al s a egies o a oid
low signals and luc ua ions in a complex ac o y en i onmen , including he ollowing:
signal moni o ing (p omp de ec ion o low signals o luc ua ions, enabling p oac i e
measu es o add ess hem be o e hey impac ope a ions), signal ampli ica ion (use o
signal ampli ie s o boos e s o s eng hen weak signals in a eas whe e co e age is poo ),
and an enna o ien a ion (p ope ly o ien ing an ennas can imp o e signal ecep ion).
In he u u e, ou ocus will be on conduc ing long- e m benchma k es s o ga he
ex ensi e 4G/5G-based da a om bo h indoo and ou doo en i onmen s. We plan o
de elop an applica ion dedica ed o e icien ly collec ing and p ocessing da a [
31
]. Addi-
ionally, we aim o implemen algo i hms ha will enhance he o ecas ing capabili ies o
4G/5G mobile signal co e age, enabling be e p edic ion o signal quali y and co e age in
a ious scena ios [32–34].

Senso s 2024,24, 2538 17 o 18
Au ho Con ibu ions: Concep ualiza ion, L.P. and J.K.; me hodology, L.P., J.K., R.S. and T.F.; so wa e,
L.P. and J.K.; alida ion, L.P., J.K. and T.F.; o mal analysis, L.P., J.K. and R.S.; in es iga ion, L.P. and
J.K.; esou ces, L.P. and J.K.; da a cu a ion, L.P. and J.K.; w i ing—o iginal d a p epa a ion, L.P.;
w i ing— e iew and edi ing, L.P., J.K., R.S. and T.F.; isualiza ion, L.P.; supe ision, T.F.; p ojec
adminis a ion, T.F.; unding acquisi ion, T.F. All au ho s ha e ead and ag eed o he published
e sion o he manusc ip .
Funding: This esea ch was suppo ed by he In e nal G an Agency o B no Uni e si y o Technology
(BUT) unde p ojec no. FEKT-S-23-8191 and by TACR p ojec no. FW03010366.
Ins i u ional Re iew Boa d S a emen : No applicable.
In o med Consen S a emen : No applicable.
Da a A ailabili y S a emen : The da a p esen ed in his s udy a e openly a ailable on Gi Hub: h ps:
//gi hub.com/polak-l/4G-5G-Mobile-Signal-Co e age-in-a-Fac o y (accessed on
4 Feb ua y 2024
).
Acknowledgmen s: We would like o exp ess ou since e g a i ude o Tajmac-ZPS, a.s. o g aciously
allowing us o conduc measu emen campaigns wi hin hei p emises. Thei coope a ion and suppo
we e in aluable in acili a ing ou esea ch endea o s.
Con lic s o In e es : The au ho s decla e no con lic s o in e es .
Re e ences
1.
Nakimuli, W.; Ga cia-Reinoso, J.; Sie a-Ga cia, J.E.; Se ano, P.; Fe nández, I.Q. Deploymen and E alua ion o an Indus y 4.0
Use Case o e 5G. IEEE Commun. Mag. 2021,59, 14–20. [C ossRe ]
2.
Temes á i, Z.M.; Ma os, D.; Kádá , P. Re iew o Mobile Communica ion and he 5G in Manu ac u ing. P ocedia Manu . 2019,
32, 600–612. [C ossRe ]
3.
Haq, I.; Soom o, J.A.; Mazha , T.; Ullah, I.; Shloul, T.A.; Ghadi, Y.Y.; Ullah, I.; Saad, A.; Tolba, A. Impac o 3G and 4G Technology
Pe o mance on Cus ome Sa is ac ion in he Telecommunica ion Indus y. Elec onics 2023,12, 1697. [C ossRe ]
4.
El-Saleh, A.A.; Alhammadi, A.; Shayea, I.; Hassan, W.H.; Honnu ali, M.S.; Da adkeh, Y.I. Measu emen analysis and pe o mance
e alua ion o mobile b oadband cellula ne wo ks in a popula ed ci y. Alex. Eng. J. 2023,66, 927–946. [C ossRe ]
5. Rod iguez, I.; Mogensen, R.S.; Fink, A.; Raunhol , T.; Ma kussen, S.; Ch is ensen, P.H.; Be a dinelli, G.; Mogensen, P.; Schou, C.;
Madsen, O. An expe imen al amewo k o 5G wi eless sys em in eg a ion in o indus y 4.0 applica ions. Ene gies 2021,14, 4444.
[C ossRe ]
6.
Bu meis e , F.; Schwa zenbe g, N.; Hö
β
le , T.; Fe weis, G. Measu ing Time-Va ying Indus ial Radio Channels o D2D
Communica ions on AGVs. In P oceedings o he 2021 IEEE Wi eless Communica ions and Ne wo king Con e ence (WCNC),
Nanjing, China, 29 Ma ch–1 Ap il 2021; pp. 1–7. [C ossRe ]
7.
Fink, A.; Mogensen, R.S.; Rod iguez, I.; Kolding, T.; Ka s ensena, A.; Poco i, G. Empi ical Pe o mance E alua ion o En e p iseWi-
Fi o IIoT Applica ions Requi ing Mobili y. In P oceedings o he Eu opean Wi eless 2021, 26 h Eu opean Wi eless Con e ence,
Ve ona, I aly, 10–12 No embe 2021; pp. 1–8.
8.
Rekopu a, N.M.; Tseng, C.W.; Wang, J.T.; Liang, S.H.; Cheng, R.G.; Li, Y.F.; Yang, W.H. Implemen a ion and E alua ion o 5G
MEC-Enabled Sma Fac o y. Elec onics 2023,12, 1310. [C ossRe ]
9.
Lyczkowski, E.; Munz, H.A.; Kiess, W.; Joshi, P. Pe o mance o P i a e LTE on he Fac o y Floo . In P oceedings o he 2020 IEEE
In e na ional Con e ence on Communica ions Wo kshops (ICC Wo kshops), Dublin, I eland, 7–11 June 2020; pp. 1–6. [C ossRe ]
10.
Schmiede , M.; Eichle , T.; Wi ig, S.; Pe e , M.; Keusgen, W. Measu emen and Cha ac e iza ion o an Indoo Indus ial
En i onmen a 3.7 and 28 GHz. In P oceedings o he 2020 14 h Eu opean Con e ence on An ennas and P opaga ion (EuCAP),
Copenhagen, Denma k, 15–20 Ma ch 2020; pp. 1–5. [C ossRe ]
11. Mi, H.; Ai, B.; He, R.; Wu, T.; Zhou, X.; Zhong, Z.; Zhang, H.; Chen, R. Mul i-Scena io Millime e Wa e Channel Measu emen s
and Cha ac e is ic Analysis in Sma Wa ehouse a 28 GHz. Elec onics 2023,12, 3373. [C ossRe ]
12.
Raida, V.; S oboda, P.; Koglbaue , M.; Rupp, M. On he S abili y o RSRP and Va iabili y o O he KPIs in LTE Downlink–An
Open Da ase . In P oceedings o he GLOBECOM 2020–2020 IEEE Global Communica ions Con e ence, Taipei, Taiwan, 7–11
Decembe 2020; pp. 1–6. [C ossRe ]
13. Raida, V.; S oboda, P.; Rupp, M. Real Wo ld Pe o mance o LTE Downlink in a S a ic Dense U ban Scena io–An Open Da ase .
In P oceedings o he GLOBECOM 2020–2020 IEEE Global Communica ions Con e ence, Taipei, Taiwan, 7–11 Decembe 2020;
pp. 1–6. [C ossRe ]
14.
Mahmud, I.; Lubna, T.; Cho, Y.Z. Pe o mance e alua ion o MPTCP on simul aneous use o 5G and 4G ne wo ks. Senso s 2022,
22, 7509. [C ossRe ] [PubMed]
15.
Kousias, K.; Rajiullah, M.; Caso, G.; Ali, U.; Alay, O.; B uns om, A.; Na dis, L.D.; Ne i, M.; Benede o, M.G.D. A La ge-Scale
Da ase o 4G, NB-IoT, and 5G Non-S andalone Ne wo k Measu emen s. IEEE Commun. Mag. 2023, 1–7. [C ossRe ]
16.
Gi Hub. Measu emen o 4G/5G Mobile Signal Co e age in a Hea y Indus y En i onmen —The Da ase . A ailable online:
h ps://gi hub.com/polak-l/4G-5G-Mobile-Signal-Co e age-in-a-Fac o y (accessed on 4 Feb ua y 2024).
Senso s 2024,24, 2538 18 o 18
17.
Implemen a ion and De elopmen o 5G Ne wo ks in he Czech Republic. A ailable online: h ps://www.da aplan.in o/img_
upload/7bdb1584e3b8a53d337518d988763 8d/implemen ace-a- oz oj-si i-5g- -c -en.pd (accessed on 4 Feb ua y 2024).
18.
Mohamed, R.; Zemou i, S.; Ve ikoukis, C. Pe o mance E alua ion and Compa ison be ween SA and NSA 5G Ne wo ks in Indoo
En i onmen . In P oceedings o he 2021 IEEE In e na ional Medi e anean Con e ence on Communica ions and Ne wo king
(Medi Com), A hens, G eece, 7–10 Sep embe 2021; pp. 112–116. [C ossRe ]
19.
HP. HP P oDesk 400 G6 Mini PC. A ailable online: h ps://suppo .hp.com/sk-en/documen /c06706059 (accessed on
4 Feb ua y 2024).
20.
QUECTEL. RM502QAEAA-M20-SGASA; IoT/M2M-Op imized 5G M.2 Module. A ailable online: h ps://www.soselec onic.
com/en/p oduc s/quec el/ m502qaeaa-m20-sgasa-1-347566 (accessed on 4 Feb ua y 2024).
21.
QUECTEL. PCIECARDEVB-KIT; E alua ion Boa d o RM500Q 5G Module. A ailable online: h ps://www.soselec onic.com/
en/p oduc s/quec el/pcieca de b-ki -1-337570 (accessed on 4 Feb ua y 2024).
22.
Shaki , Z.; Mjhool, A.Y.; Al-Thaedan, A.; Al-Sabbagh, A.; Alsabah, R. Key pe o mance indica o s analysis o 4 G-LTE cellula
ne wo ks based on eal measu emen s. In . J. In . Technol. 2023,15, 1347–1355. [C ossRe ]
23.
3GPP. LTE; E ol ed Uni e sal Te es ial Radio Access (E-UTRA); Physical Laye ; Measu emen s (3GPP TS 36.214 Ve sion 14.2.0
Release 14). 2017. A ailable online: h ps://www.e si.o g/deli e /e si_ s/136200_136299/136214/14.02.00_60/ s_136214 14020
0p.pd (accessed on 4 Feb ua y 2024).
24.
Range ul. Wha Is RSSI, SINR, RSRP, RSRQ? How Does This A ec Signal Quali y? A ailable online: h ps://www. ange ul.
com/wha -is- ssi-sin - s p- s q-how-does- his-a ec -signal-quali y/ (accessed on 4 Feb ua y 2024).
25.
Mi , U.; Nuaymi, L. Compa ison o Policy Realiza ion S a egies o LTE Ne wo ks. In P oceedings o he 2012 IEEE Vehicula
Technology Con e ence (VTC Fall), Quebec Ci y, QC, Canada, 3–6 Sep embe 2012; pp. 1–6. [C ossRe ]
26.
Milos, J.; Polak, L.; Hanus, S.; K a och il, T. Wi-Fi in luence on LTE downlink da a and con ol channel pe o mance in sha ed
equency bands. Radioenginee ing 2017,26, 201–210. [C ossRe ]
27. Tajmac-ZPS a.s. A ailable online: h ps://www. ajmac-zps.cz/ ajmac-g oup/ (accessed on 4 Feb ua y 2024).
28.
Jape as, S.; G imaila, V. Mobile signal pa h losses in mic ocells behind buildings. Radioenginee ing 2017,26, 191–197. [C ossRe ]
29.
Teko ic, A.; Bone acic, D.; Sisul, G.; Nad, R. In e e ence analysis be ween mobile adio and digi al e es ial ele ision in he
digi al di idend spec um. Radioenginee ing 2017,26, 211–220. [C ossRe ]
30.
Nguyen, N.L.; Tu, L.T.; Nguyen, T.N.; Nguyen, P.L.T.; Nguyen, Q.S. Pe o mance on cogni i e b oadcas ing ne wo ks employing
Foun ain codes and maximal a io ansmission. Radioenginee ing 2023,32, 1–10. [C ossRe ]
31.
Bipon, A.A.; Osman, A.; Islam, M.S.; Asyha i, A.T.; Aboza iba, R. Pa h inde : End- o-End Au oma ion o Co e age Mapping
o 4G/5G Ne wo ks a S ee Le el. In P oceedings o he 2023 20 h Annual IEEE In e na ional Con e ence on Sensing,
Communica ion, and Ne wo king (SECON), Mad id, Spain, 11–14 Sep embe 2023; pp. 375–377. [C ossRe ]
32.
Zhang, L.; Chu, X.; Zhai, M. Machine Lea ning-Based In eg a ed Wi eless Sensing and Posi ioning o Cellula Ne wo k. IEEE
T ans. Ins um. Meas. 2023,72, 5501011. [C ossRe ]
33.
Rochman, M.I.; Sa hya, V.; Fe nandez, D.; Nunez, N.; Ib ahim, A.S.; Payne, W.; Ghosh, M. A comp ehensi e analysis o he
co e age and pe o mance o 4G and 5G deploymen s. Compu . Ne w. 2023,237, 110060. [C ossRe ]
34.
Al-Thaedan, A.; Shaki , Z.; Mjhool, A.Y.; Alsabah, R.; Al-Sabbagh, A.; Nembha d, F.; Salah, M. A machine lea ning amewo k o
p edic ing downlink h oughpu in 4G-LTE/5G cellula ne wo ks. In . J. In . Technol. 2024,16, 651–657. [C ossRe ]
Disclaime /Publishe ’s No e: The s a emen s, opinions and da a con ained in all publica ions a e solely hose o he indi idual
au ho (s) and con ibu o (s) and no o MDPI and/o he edi o (s). MDPI and/o he edi o (s) disclaim esponsibili y o any inju y o
people o p ope y esul ing om any ideas, me hods, ins uc ions o p oduc s e e ed o in he con en .