4.7 Article

Heat storage thermoelectric generator as an electrical power source for wireless Iot sensing systems

期刊

INTERNATIONAL JOURNAL OF ENERGY RESEARCH
卷 45, 期 10, 页码 15557-15568

出版社

WILEY
DOI: 10.1002/er.6774

关键词

ambient temperature fluctuations; phase‐ change material; thermoelectric generator; wireless internet of things sensing system

资金

  1. New Energy and Industrial Technology Development Organization, NEDO

向作者/读者索取更多资源

This study presents a new method that uses a thermoelectric generator to convert thermal energy from environmental temperature fluctuations into electricity, which can be stored in a capacitor for portable devices. By evaluating different sizes of TEGs with heat storage material, efficient electric power generation and storage capabilities were demonstrated, showing potential for battery-free wireless sensing systems.
This article demonstrates a new approach using a thermoelectric generator (TEG), which converts thermal energy from ambient temperature fluctuations into electricity for the power source of portable devices. Using TEGs with heat storage material on one side of the TEG, a temperature difference can be created at both sides of the TEG from ambient temperature variations. In this work, the electric power generation and its storage to a capacitor are evaluated for the TEG-heat storage device. Two kinds of TEGs (#1 and #2) with different sizes have been evaluated. Maximum output power densities of TEGs #1 and #2 are 0.27 and 0.45 mW/cm(2) at temperature difference increment T = 7 degrees C, respectively. The electric power from the TEG can be stored in a capacitor via a DC-DC converter. The temperature difference dependences of the electronic conversion efficiency for the DC-DC booster are evaluated for both TEGs. A charge stored in the capacitor is 113 mu Ah under increment T = 3 degrees C. The maximum output power and the storable energy in the capacitor are 30 mu W and 500 mJ, respectively, under ambient temperature fluctuations in near room temperature. The investigation in this work could possibly lead to high potential for battery-free wireless sensing systems.

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