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High-performance self-powered wireless sensor node driven by a flexible thermoelectric generator

机译:柔性热电发电机驱动的高性能自供电无线传感器节点

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As industrial environments expand and become more automated, wireless sensor networks are attracting attention as an essential technology for efficient operation and safety. A wireless sensor node (WSN), self-powered by an energy harvester, can significantly reduce maintenance costs as well as the manpower costs associated with the replacement of batteries. Among the many studies on energy harvesting technologies for self-powered WSNs, however, the harvested power has been too low to be practically used in industrial environments. In this work, we demonstrate a self-powered WSN driven by a flexible thermoelectric generator (f-TEG) with a significantly improved degree of practicality. We developed a large-area f-TEG which can be wrapped around heat pipes with various diameters, improving their usability and scalability. A study was conducted to optimize the performance of the f-TEG for a particular WSN application, and an f-TEG fabricated with an area of 140 x 113 mm(2) harvested 272 mW of energy from a heat pipe at a temperature of 70 degrees C. We also tested a complete self-powered WSN system capable of the remote monitoring of the heat pipe temperature, ambient temperature, humidity, CO2 and volatile organic compound concentrations via LoRa communication. The fabricated self-powered WSN system can wirelessly transmit the data at distances as long as 500 m. (C) 2018 Elsevier Ltd. All rights reserved.
机译:随着工业环境的扩展和自动化程度的提高,无线传感器网络作为一种有效的操作和安全性的必不可少的技术正受到关注。由能量收集器自供电的无线传感器节点(WSN)可以显着降低维护成本以及与更换电池相关的人力成本。但是,在许多有关自供电无线传感器的能量收集技术的研究中,收集的能量太低,无法在工业环境中实际使用。在这项工作中,我们展示了由柔性热电发电机(f-TEG)驱动的自供电WSN,其实用性得到了显着提高。我们开发了大面积的f-TEG,可以将其缠绕在具有各种直径的热管周围,从而提高了其可用性和可扩展性。进行了一项研究,以针对特定WSN应用优化f-TEG的性能,制造了面积为140 x 113 mm(2)的f-TEG,在70℃的温度下从热管中收获了272 mW的能量。我们还测试了完整的自供电WSN系统,该系统能够通过LoRa通讯远程监控热管温度,环境温度,湿度,CO2和挥发性有机化合物的浓度。预制的自供电WSN系统可以无线传输距离长达500 m的数据。 (C)2018 Elsevier Ltd.保留所有权利。

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