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Feasibility analysis of heart rate monitoring of construction workers using a photoplethysmography (PPG) sensor embedded in a wristband-type activity tracker

机译:使用腕带式活动追踪器中嵌入的光电容积描记(PPG)传感器对建筑工人进行心率监测的可行性分析

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摘要

With increasing concerns regarding occupational safety and health, managing excessive physical workloads of workers is critical to prevent workers' fatigue, injuries, errors, or accidents at physically demanding workplaces such as construction. In this regard, heart rate (HR) is an effective physiological indicator of workers' physical demands. Currently, off-the-shelf wearable activity trackers (e.g., wristband-type) can monitor a worker's HR with its embedded photoplethysmography (PPG) sensor. However, PPG signals can be highly affected by signal noises resulted from user's movements, and thus the exact HR extraction from a wristband-type PPG may not be sufficiently accurate during intensive construction tasks. In this paper, we investigate the accuracy of a PPG sensor embedded in a wristband-type tracker to see if it can be used for construction. Through field data collection from seven construction workers, we conduct a comparative HR analysis between a PPG sensor and an electro-cardiography (ECG) sensor in a chest strap used as ground truth. The results show that a PPG-based HR sensor in a wristband-type activity tracker has a potential for practicable HR monitoring of construction workers with 4.79% of mean-average-percentage-error (MAPE) and 0.85 of correlation coefficient for whole datasets (4.44%, 4.52%, and 533% of MAPEs and 0.89, 0.70, and 0.61 of correlation coefficients during light works with <90 bpm of HRs, moderate works with 90-110 bpm of HRs, and heavy works with >110 bpm of HRs, respectively). Because there is still room for improvement of the accuracy, particularly during heavy works, we also investigate the factors affecting the accuracy of HR monitoring using inequality statistics. From this secondary investigation, we found the major sources of error including noises from motion artifacts. With advanced noise-cancellation techniques, it is expected that that field HR monitoring using wearable activity trackers can be used to evaluate worker's physical demands from diverse construction tasks in a non-intrusive and affordable way. As a result, our work will help manage excessive workloads (e.g., flexing work/rest plans) so that a worker can sustain his/her given tasks during working time in a safer and healthier way. (C) 2016 Elsevier B.V. All rights reserved.
机译:随着人们对职业安全和健康的日益关注,管理工人过多的身体工作量对于防止工人在对身体有要求的工作场所(例如建筑)中出现疲劳,受伤,错误或事故至关重要。在这方面,心率(HR)是工人身体需求的有效生理指标。当前,现成的可穿戴活动跟踪器(例如腕带式)可以通过其嵌入式光电容积描记(PPG)传感器监视工人的HR。但是,PPG信号可能会受到用户运动产生的信号噪声的严重影响,因此从腕带式PPG提取准确的HR可能在密集的建筑任务中不够准确。在本文中,我们研究了嵌入在腕带式跟踪器中的PPG传感器的准确性,以查看其是否可用于构造。通过从七名建筑工人处收集的现场数据,我们在用作地面实况的胸带中的PPG传感器和心电图(ECG)传感器之间进行了比较HR分析。结果表明,腕带式活动跟踪器中基于PPG的HR传感器具有对建筑工人进行切实可行的HR监测的潜力,平均数据集的平均平均误差(MAPE)为4.79%,整个数据集的相关系数为0.85( HR小于90 bpm的轻型工程,HR小于90 bpm的中度工程,HR大于110 bpm的重度工程中的4.44%,4.52%和533%的MAPE和相关系数的0.89、0.70和0.61 , 分别)。因为仍然存在提高准确性的空间,尤其是在繁重的工作中,所以我们还使用不平等统计资料来调查影响HR监视准确性的因素。通过这次二次调查,我们发现了误差的主要来源,包括运动伪影产生的噪声。借助先进的消除噪音技术,可以预期使用可穿戴活动跟踪器进行的现场HR监视可以以一种非侵入性且负担得起的方式来评估工人对各种施工任务的身体需求。结果,我们的工作将有助于管理过多的工作量(例如,制定工作/休息计划),从而使工人能够在工作时间内以更安全,更健康的方式维持自己的任务。 (C)2016 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Automation in construction》 |2016年第2期|372-381|共10页
  • 作者单位

    Univ Michigan, Dept Civil & Environm Engn, Tishman Construct Management Program, 2350 Hayward St,Suite 1316 GG Brown Bldg, Ann Arbor, MI 48109 USA;

    Hong Kong Polytech Univ, Dept Bldg & Real Estate, ZS725,South Tower,7-F,Block Z, Kowloon, Hong Kong, Peoples R China;

    Univ Michigan, Dept Civil & Environm Engn, Tishman Construct Management Program, 2350 Hayward St,Suite 1316 GG Brown Bldg, Ann Arbor, MI 48109 USA;

    Univ Michigan, Tishman Construct Management Program, Dept Civil & Environm Engn, 2350 Hayward St,Suite 2340 GG Brown Bldg, Ann Arbor, MI 48109 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Construction worker; Heart rate; Occupational health; Remote sensing; Work physiology;

    机译:建筑工人;心律;职业健康;遥感;工作生理;

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