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Self-Powered Autonomous Wireless Sensor Node by Using Silicon-Based 3D Thermoelectric Energy Generator for Environmental Monitoring Application

机译:通过使用基于硅的3D热电能量发生器进行自动自动无线传感器节点用于环境监测应用

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摘要

In this paper, we present the results of a preliminary study on the self-powered autonomous wireless sensor node by using thermoelectric energy generator based on Silicon (Si) thermoelectric legs, energy management integrated circuit (EMIC), Radio Frequency (RF) module with a temperature and humidity sensor, etc. A novel thermoelectric module structure is designed as an energy generator module, which consists of 127 pairs of Silicon legs and this module is fabricated and tested to demonstrate the feasibility of generating electrical power under the temperature gradient of 70K. EMIC has three key features besides high efficiency, which are maximum power point tracking (MPPT), cold start, and complete self-power operation. EMIC achieved a cold start voltage of 200 mV, peak efficiency of 78.7%, MPPT efficiency 99.4%, and an output power of 34 mW through only the Thermoelectric Generator (TEG) source. To assess the capability of the device as a small scale power source for internet of things (IoT) service, we also tested energy conversion and storage experiments. Finally, the proposed sensor node system which can transmit and monitor the information from the temperature and humidity sensor through the RF module in real time demonstrates the feasibility for variable applications.
机译:在本文中,我们通过使用基于硅(Si)热电腿,能量管理集成电路(EMIC),射频(RF)模块的热电能发电机来介绍自动自动无线传感器节点上的初步研究结果一种温度和湿度传感器等。一种新颖的热电模块结构设计为能量发电机模块,由127对硅腿组成,并制造该模块,以证明在70K的温度梯度下发电的可行性。 EMIC除了高效率外,具有三个关键特性,这是最大功率点跟踪(MPPT),冷启动和完整的自动操作。 EMIC实现了200mV的冷启动电压,峰值效率为78.7%,MPPT效率为99.4%,并且仅通过热电发电机(TEG)源34 MW的输出功率。为了评估设备作为用于物联网(物联网)服务的小型电源的能力,我们还测试了能量转换和储存实验。最后,可以实时通过RF模块从温度和湿度传感器发送和监视来自温度和湿度传感器的信息的所提出的传感器节点系统演示了可变应用的可行性。

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