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评估智能防火服报警系统的功能。

Evaluation of Functionality of Warning System in Smart Protective Clothing for Firefighters.

机构信息

Department of Personal Protective Equipment, Central Institute for Labour Protection-National Research Institute, 90-133 Lodz, Poland.

Department of Microelectronics and Computer Science, Lodz University of Technology, 90-924 Lodz, Poland.

出版信息

Sensors (Basel). 2021 Mar 4;21(5):1767. doi: 10.3390/s21051767.

Abstract

Recent achievements in the field of miniaturization of electronics have led to a significant interest in its application into the protective clothing for firefighters in order to improve their safety and health. However, up to now there are not any requirements and standardized test methods enabling confirmation of safety of use and functionality of these systems in work environment. In the paper, an importance of evaluation of such smart wearable system in predicted utility conditions is highlighted. Three variants of the specially developed personal warning systems (PWSs) for integration with either health status or environmental sensors to be used in smart protective clothing for firefighters are presented, i.e., with LCD display, LED diodes and vibrating element. For the purpose of evaluation a new testing methodology was developed. The PWSs were evaluated on a basis of perception of warning signals by firefighters in simulated utility conditions including temperature, light, noise, fog and performed activities. In the case of marching, even 75% of signals generated by PWS with LCD display were not received. Physical activity did not influence on functionality of PWS with vibrating element. For the PWS with LED diodes, the signal was received statistically significantly quicker than in the case of other PWS and the mean value of voice response time was below 3 s.

摘要

近年来,电子设备的小型化在防护服装领域的应用引起了人们的极大兴趣,以期提高消防员的安全性和健康水平。然而,到目前为止,还没有任何要求和标准化的测试方法能够确认这些系统在工作环境中的使用安全性和功能。本文强调了在预测使用条件下评估此类智能可穿戴系统的重要性。本文提出了三种专门开发的个人预警系统(PWS)变体,可与健康状况或环境传感器集成,用于消防员的智能防护服,即带有液晶显示器、发光二极管和振动元件。为了评估的目的,开发了一种新的测试方法。在模拟使用条件下,包括温度、光、噪声、雾和执行的活动,对消防员感知预警信号的 PWS 进行了评估。在行军的情况下,即使是带有液晶显示器的 PWS 发出的 75%的信号也没有被接收。身体活动不会影响带有振动元件的 PWS 的功能。对于带有发光二极管的 PWS,信号的接收速度比其他 PWS 快,并且语音响应时间的平均值低于 3 秒。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/361b/7962023/cb6d86919dbf/sensors-21-01767-g001.jpg

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