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Energy Harvesting Electronics for Vibratory Devices in Self-Powered Sensors

机译:自供电传感器中振动设备的能量收集电子设备

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Recent advances in energy harvesting have been intensified due to urgent needs of portable, wireless electronics with extensive life span. The idea of energy harvesting is applicable to sensors that are placed and operated on some entities for a long time, or embedded into structures or human bodies, in which it is troublesome or detrimental to replace the sensor module batteries. Such sensors are commonly called “self-powered sensors.” The energy harvester devices are capable of capturing environmental energy and supplanting the battery in a standalone module, or working along with the battery to extend substantially its life. Vibration is considered one of the most high power and efficient among other ambient energy sources, such as solar energy and temperature difference. Piezoelectric and electromagnetic devices are mostly used to convert vibration to ac electric power. For vibratory harvesting, a delicately designed power conditioning circuit is required to store as much as possible of the device-output power into a battery. The design for this power conditioning needs to be consistent with the electric characteristics of the device and battery to achieve maximum power transfer and efficiency. This study offers an overview on various power conditioning electronic circuits designed for vibratory harvester devices and their applications to self-powered sensors. Comparative comments are provided in terms of circuit topology differences, conversion efficiencies and applicability to a sensor module.
机译:由于对具有长寿命的便携式无线电子设备的迫切需求,在能量收集方面的最新进展得到了加强。能量收集的概念适用于长时间放置在某些实体上并在其上运行的传感器,或者嵌入到建筑物或人体中的传感器,在这些传感器中更换传感器模块电池比较麻烦或有害。这种传感器通常称为“自供电传感器”。能量收集器设备能够捕获环境能量并将电池替换为独立模块,或者与电池一起工作以大大延长其寿命。振动被认为是其他环境能源(例如太阳能和温差)中最高的功率和效率之一。压电和电磁设备通常用于将振动转换为交流电。对于振动采集,需要精心设计的功率调节电路,以将尽可能多的设备输出功率存储到电池中。此功率调节的设计需要与设备和电池的电气特性保持一致,以实现最大的功率传输和效率。这项研究概述了为振动收割机设备设计的各种功率调节电子电路及其在自供电传感器中的应用。在电路拓扑差异,转换效率和对传感器模块的适用性方面提供了比较注释。

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