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A Vibration Energy Harvester and Power Management Solution for Battery-Free Operation of Wireless Sensor Nodes

机译:无线传感器节点无电池运行的振动能量收集器和电源管理解决方案

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摘要

Electromagnetic Vibration Energy Harvesting (EM-VEH) is an attractive alternative to batteries as a power source for wireless sensor nodes that enable intelligence at the edge of the Internet of Things (IoT). Industrial environments in particular offer an abundance of available kinetic energy, in the form of machinery vibrations that can be converted into electrical power through energy harvesting techniques. These ambient vibrations are generally broadband, and multi-modal harvesting configurations can be exploited to improve the mechanical-to-electrical energy conversion. However, the additional challenge of energy conditioning (AC-to-DC conversion) to make the harvested energy useful brings into question what specific type of performance is to be expected in a real industrial application. This paper reports the operation of two practical IoT sensor nodes, continuously powered by the vibrations of a standard industrial compressor, using a multi-modal EM-VEH device, integrated with customised power management. The results show that the device and the power management circuit provide sufficient energy to receive and transmit data at intervals of less than one minute with an overall efficiency of about 30%. Descriptions of the system, test-bench, and the measured outcomes are presented.
机译:电磁振动能量收集(EM-VEH)是电池的一种有吸引力的替代方案,它可以作为无线传感器节点的电源,从而在物联网(IoT)的边缘实现智能化。特别是工业环境,以机械振动的形式提供了大量的可用动能,这些振动可以通过能量收集技术转化为电能。这些环境振动通常是宽带的,可以利用多模式采集配置来改善机械能到电能的转换。然而,能量调节(交流到直流转换)以使收集的能量变得有用的附加挑战使人们质疑在实际的工业应用中期望什么特定类型的性能。本文报告了两个实用的IoT传感器节点的运行情况,这些节点通过使用多模式EM-VEH设备并结合定制的电源管理功能,由标准工业压缩机的振动持续供电。结果表明,该设备和电源管理电路提供了足够的能量,以不到一分钟的间隔接收和发送数据,总效率约为30%。介绍了系统,测试台和测量结果的描述。

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