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Title:Workload intensity in human–robot collaboration : a personalized approach to sustainable efficiency and well-being
Authors:ID Javernik, Aljaž (Author)
ID Ojsteršek, Robert (Author)
ID Kerman, Katja (Author)
Files:.pdf javernik-et-al-2026-workload-intensity-in-human-robot-collaboration-a-personalized-approach-to-sustainable-efficiency.pdf (1,19 MB)
MD5: 6E06CB932B8C1C24D729409D8B41099A
 
URL https://journals.sagepub.com/doi/full/10.1177/00187208261423621
 
Language:English
Work type:Article
Typology:1.01 - Original Scientific Article
Organization:FS - Faculty of Mechanical Engineering
FF - Faculty of Arts
Abstract:Objective: To investigate how varying workload intensity and personalized conditions influence physiological stress responses and task efficiency in human–robot collaboration (HRC). Background: HRC is increasingly used to enhance productivity and reduce physical demands, yet workers’ mental and physiological strain remains unaddressed. High workload intensity, often induced by robot pacing, can elevate autonomic stress responses, and current systems rarely adapt workload to individual worker capacity. Understanding how workload levels, particularly personalized pacing, affect physiological stress and task performance is essential for designing human-centric collaborative workplaces. Methods: The study consisted of two experiments. In the first experiment (E1), participants completed an assembly task with a collaborative robot (CR) under two workload conditions (low, high). In the second experiment (E2), participants completed an additional personalized scenario in which the CR motion parameters were adjusted to each participant’s capacity. Heart rate variability (HRV) indicators were assessed, and task performance was evaluated using assembly time (AT). Results: In E1, the high workload reduced AT, but increased the heart rate (HR) and decreased the root mean square of successive differences (RMSSD), indicating elevated stress. In E2, the personalized scenario maintained efficiency while lowering the HR and restoring the RMSSD compared to the high-intensity condition. The high-frequency (HF) power showed no significant variation in either experiment. Conclusions: Workload intensity significantly affects both efficiency and physiological stress in HRC. Personalizing the CR motion parameters to worker capacity preserves performance while reducing stress responses. Application: Adaptive, capacity-based HRC strategies can help manufacturers sustain productivity without compromising worker well-being.
Keywords:human-centric design, health, physiological stress, heart rate variability, industry 5.0
Publication status:Published
Publication version:Version of Record
Submitted for review:18.09.2025
Article acceptance date:26.01.2026
Publication date:11.02.2026
Publisher:Sage Journals
Year of publishing:2026
Number of pages:str. 1-17
PID:20.500.12556/DKUM-97473 New window
UDC:004.5:004.8:62-52:331.101.5
ISSN on article:1547-8181
COBISS.SI-ID:271169795 New window
DOI:10.1177/00187208261423621 New window
Copyright:This article is distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 License (https://creativecommons.org/licenses/by-nc/4.0/) which permits non-commercial use, reproduction and distribution of the work without further permission provided the original work is attributed as specified on the SAGE and Open Access page (https://us.sagepub.com/en-us/nam/open-access-at-sage).
Publication date in DKUM:13.03.2026
Views:298
Downloads:5
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Categories:Misc.
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Record is a part of a journal

Title:Human factors
Publisher:Pergamon Press, Johns Hopkins Press, Johns Hopkins University Press, Human Factors Society
ISSN:1547-8181
COBISS.SI-ID:519807257 New window

Document is financed by a project

Funder:ARIS - Slovenian Research and Innovation Agency
Project number:P2-0190-2018
Name:Napredni koncepti menedžmenta proizvodnje in dimenzionalnega meroslovja

Funder:the University of Maribor
Funding programme:the Internal Call for Financial Incentives for the Development of Research Activities in 2024
Project number:Agreement No. 075/2024/42-SPO

Licences

License:CC BY-NC 4.0, Creative Commons Attribution-NonCommercial 4.0 International
Link:http://creativecommons.org/licenses/by-nc/4.0/
Description:A creative commons license that bans commercial use, but the users don’t have to license their derivative works on the same terms.

Secondary language

Language:Slovenian
Keywords:človeku prilagojeno oblikovanje, zdravje, fiziološki stres, variabilnost srčnega utripa, industrija 5.0


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