Ajou University repository

Machine learning-based identification and classification of physical fatigue levels: A novel method based on a wearable insole deviceoa mark
  • Antwi-Afari, Maxwell Fordjour ;
  • Anwer, Shahnawaz ;
  • Umer, Waleed ;
  • Mi, Hao Yang ;
  • Yu, Yantao ;
  • Moon, Sungkon ;
  • Hossain, Md Uzzal
Citations

SCOPUS

41

Citation Export

Publication Year
2023-01-01
Publisher
Elsevier B.V.
Citation
International Journal of Industrial Ergonomics, Vol.93
Keyword
Fatigued-related injuriesMachine learningMusculoskeletal disordersPhysical fatigueWearable sensors
Mesh Keyword
Construction workersData sampleFatigue assessmentsFatigue levelFatigued-related injuryMachine-learningMusculoskeletal disordersPhysical fatiguesRelated injuriesWorkers'
All Science Classification Codes (ASJC)
Human Factors and ErgonomicsPublic Health, Environmental and Occupational Health
Abstract
Construction is known for being a labor-intensive and risky industry. Within various occupational settings such as construction, physical fatigue is an underlying health condition that may lead to musculoskeletal disorders and fall-related injuries. Identifying a worker's physical fatigue could enable safety managers to mitigate fatigue-related injuries and improve workplace operations. However, current physical fatigue assessment and identification methods include subjective, physiological, biomechanical, and computer vision approaches, which may be unreliable, intrusive, and require extensive post-processing, thus, rendering them impractical for continuous monitoring of workers' movements and automated identification of physical fatigue. Given the above, this study aims to utilize a wearable insole device to identify and classify physical fatigue levels in construction workers. Ten asymptomatic subjects were recruited to perform a fatiguing manual rebar tying activity in a laboratory setting. Borg's rating of perceived exertion (RPE) was applied as a subjective measure for collecting the levels of physical fatigue of each subject. Three sub-classification problems for identifying physical fatigue levels (i.e., PFL1, PFL2, and PFL3) were assessed. Numerous features were evaluated from the collected data samples after data segmentation. The classification performance of supervised machine learning algorithms was evaluated at a sliding window of 2.56 s. Our results from 10-fold cross-validation show an accuracy of 86% for the Random Forest (RF) algorithm, indicating the best performance among other algorithms. In addition, precision, recall, specificity, and F1-score metrics of the RF algorithm were between 52.63% and 82.62%, 52.63%–84.32%, 89.60%–92.33%, and 52.63%–83.46%, respectively. These results indicate that data samples such as acceleration and plantar pressure acquired from a wearable insole device are reliable for identifying and classifying physical fatigue levels in construction workers. In summary, this study would contribute to providing a proactive physical fatigue assessment method and guidelines for early identification of physical fatigue in construction.
Language
eng
URI
https://dspace.ajou.ac.kr/dev/handle/2018.oak/33143
DOI
https://doi.org/10.1016/j.ergon.2022.103404
Fulltext

Type
Article
Funding
The authors would like to thank (1) Aston Institute for Urban Technology and the Environment (ASTUTE) , and (2) Aston Research and Knowledge Exchange Pump Priming Fund 2021/22 at Aston University for sponsoring this research study. Many thanks to all our subjects.
Show full item record

Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.

Related Researcher

Moon, Sung Kon Image
Moon, Sung Kon문성곤
Department of Civil Systems Engineering
Read More

Total Views & Downloads

File Download

  • There are no files associated with this item.