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首页> 外文期刊>Sensors and Actuators, A. Physical >Wireless sensor node powered by aircraft specific thermoelectric energy harvesting
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Wireless sensor node powered by aircraft specific thermoelectric energy harvesting

机译:由飞机特定的热电能量收集供电的无线传感器节点

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摘要

An energy autonomous wireless sensor system consisting of an energy harvesting power source, an energy management unit and a low power wireless sensor node is tested for aircraft applications. The autonomous power source combines aircraft specific outside temperature changes with a thermoelectric generator (TEG) and a heat storage unit. The temperature difference generated with the latter component artificially at the TEG is used to power the sensor node by thermoelectricity. Additionally, a high efficient low input voltage power management circuit is necessary to store the generated energy and to convert it to higher voltage levels needed to operate the sensor. The experimental data are compared with results from numerical simulation models to predict the energy conversion in the heat storage - TEG system. A new TEG prototype is tested and the energy output is improved by 14%. The power management storage capacitors are adapted to the available energy, thereby increasing storage voltage and conversion efficiency. Doing so, the efficiency of the complete system can be increased by around 50%.
机译:由飞机的应用测试了由能量收集电源,能量管理单元和低功率无线传感器节点组成的能量自主无线传感器系统。自主电源将飞机特定的外部温度变化与热电发电机(TEG)和储热单元结合在一起。在TEG上由后一个组件人工生成的温差用于通过热电为传感器节点供电。另外,高效的低输入电压电源管理电路对于存储产生的能量并将其转换为操作传感器所需的更高电压电平是必需的。将实验数据与数值模拟模型的结果进行比较,以预测储热-TEG系统中的能量转换。测试了新的TEG原型,并将能量输出提高了14%。电源管理存储电容器适合可用能量,从而提高了存储电压和转换效率。这样做,整个系统的效率可以提高大约50%。

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