A Completely Autonomous TEG-Based Node for Thermal Gradient Measurements

C. Trigona, M. Privitera, R. L. Rosa
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Abstract

This paper presents a fully autonomous measurement system based on thermoelectric generators (TEGs). The system implements a battery-less device that, by using a TEG, harvests energy from a thermal gradient and it is able to perform measurements with the same transducer. The device implements a conditioning circuit to harvest energy using an ultra-low-power system on chip (SoC) provided by STMicroelectronics. The SoC plays the role of sensing the harvested energy to activate a Bluetooth Low Energy radio as soon as the harvested energy is enough for transmission. The measuring method exploits the proportionality between the thermal gradient and the frequency of the transmitted beacons. The reading of the measurement data uses a convenient time-domain readout approach. Results and experiments evince the suitability of the proposed solution with the possibility to adopt and disseminate the device in various environments and for application in an industrial scenario.
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基于teg的完全自主热梯度测量节点
提出了一种基于热电发电机的全自主测量系统。该系统实现了一个无电池设备,通过使用TEG,从热梯度中收集能量,并且能够使用相同的传感器进行测量。该器件采用意法半导体(STMicroelectronics)提供的超低功耗片上系统(SoC)实现调理电路以收集能量。SoC的作用是感知收集到的能量,以便在收集到的能量足以传输时激活低功耗蓝牙无线电。该测量方法利用了热梯度与发射信标频率之间的比例关系。测量数据的读取使用方便的时域读出方法。结果和实验证明了所提出的解决方案的适用性,可以在各种环境中采用和传播该设备,并在工业场景中应用。
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