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Human Body Heat Based Thermoelectric Harvester with Ultra-Low Input Power Management System for Wireless Sensors Powering

机译:用于无线传感器的超低输入电源管理系统的人体热电收割机

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摘要

Energy harvesting (EH) technique has been proposed as a favorable solution for addressing the power supply exhaustion in a wireless sensor node and prolong the operating time for a wireless sensor network. Thermoelectric energy generator (TEG) is a valuable device converting the waste heat into electricity which can be collected and stored for electronics. In this paper, the thermal energy from human body is captured and converted to the low electrical energy by means of thermoelectric energy harvester. The aim of presented work is utilizing the converted electricity to power the related electronic device and to extend the working life of a sensor node. Considering the related characteristics of TEG used for human, a type of a novel power management system is designed and presented to harvest generated electricity. The proposed circuit is developed based on off-the-shelf commercial chips, LTC3108 and BQ25504. It can accept the lowest input voltage of 20 mV, which is more suitable for human thermoelectric energy harvesting. Through experiments, developed energy harvesting system can effectively power the sensor to intermittently transmit the data as well as perform the converted energy storage. Compared to the independent commercial chips applications and other microcontroller-based energy harvesting systems, the designed thermoelectric energy harvester system presents the advantages not only in high energy storage utilization rate but also the ultra-low input voltage characteristic. Since the heat from human body is harvested, therefore, the system can possibly be used to power the sensor placed on human body and has practical applications such as physiological parameter monitoring.
机译:已经提出了能量收集(EH)技术作为用于解决无线传感器节点中的电源耗尽的有利解决方案,并延长无线传感器网络的操作时间。热电能发电机(TEG)是将废热转换成电力的有价值的装置,其可以收集和储存电子设备。本文通过热电能收割机捕获并将来自人体的热能捕获并转换为低电能。所提出的工作的目的是利用转换电力为相关电子设备供电并延长传感器节点的工作寿命。考虑到用于人类的TEG的相关特征,设计了一种新型电力管理系统,并提出了收获产生的电力。所提出的电路是基于现成的商用芯片,LTC3108和BQ25504开发的。它可以接受20 mV的最低输入电压,更适合人类热电能量收获。通过实验,开发的能量收集系统可以有效地为传感器供电以间歇地传输数据以及执行转换的能量存储。与独立的商业芯片应用和其他基于微控制器的能量收集系统相比,设计的热电能量收割机系统不仅具有高能储存利用率,而且具有超低输入电压特性的优点。因此,由于收获来自人体的热量,因此系统可以用于为放置在人体上的传感器供电,并且具有诸如生理参数监测的实际应用。

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