Objective evaluation of wearable thermoelectric generator: From platform building to performance verification.

Zhuoming Xu, Dongwang Yang, Xiong Yuan, Siheng Hua, Hanjing You, Yubing Xing, Kai Hu, Jiang Wang, Yani Xiao, Yonggao Y. Yan, Xinfeng Tang
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引用次数: 2

Abstract

Wearable thermoelectric generators can harvest heat from the human body to power an intelligent electronic device, which plays an important role in wearable electronics. However, due to the complexity of human skin, there is still no unified standard for performance testing of wearable thermoelectric generators under wearable conditions. Herein, a test platform suitable for a wearable thermoelectric generator was designed and built by simulating the structure of the arm. Based on the biological body temperature regulation function, water flow and water temperature substitute blood flow and blood temperature, the silicone gel with some thickness simulates the skin layer of the human arm, thus achieving the goal of adjusting the thermal resistance of human skin. Meanwhile, the weight is used as the contact pressure to further ensure the reliability and accuracy of the test data. In addition, the environment regulatory system is set up to simulate the outdoor day. Actually, the maximum deviation of the performance of the thermoelectric generator worn on the test platform and human arm is ∼5.2%, indicating the accuracy of objective evaluation.
可穿戴热电发电机的客观评价:从搭建平台到性能验证。
可穿戴式热电发电机可以从人体收集热量,为智能电子设备供电,在可穿戴电子产品中起着重要作用。然而,由于人体皮肤的复杂性,对于可穿戴热电发电机在可穿戴条件下的性能测试,目前还没有统一的标准。在此基础上,通过模拟手臂结构,设计并搭建了适合于可穿戴式热电发电机的测试平台。基于生物体温调节功能,水流和水温代替血流和血液温度,具有一定厚度的硅胶模拟人体手臂的皮肤层,从而达到调节人体皮肤热阻的目的。同时,采用重量作为接触压力,进一步保证了试验数据的可靠性和准确性。此外,还设置了模拟室外环境的环境监管系统。实际上,在测试平台上佩戴的热电发电机性能与人的手臂的最大偏差为~ 5.2%,表明客观评价的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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