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Electric Power Self-Supply Module for WSN Sensor Node Based on MEMS Vibration Energy Harvester

机译:基于MEMS振动能量采集器的WSN传感器节点电源自供电模块

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摘要

This paper proposes an electric power self-supply module for the wireless sensor network (WSN) sensor node. The module includes an electromagnetic vibration energy harvester based on micro-electro-mechanical system (MEMS) technology and a processing circuit. The vibration energy harvester presented in this paper is fabricated by an integrated microfabrication process and consists of four similar and relatively independent beam vibration elements. The main functions of the processing circuit are to convert the output of the harvester from unstable alternating current (AC) to stable direct current (DC), charge the super capacitor, and ensure the stable output of the super capacitor. The preliminary test results of the harvester chip show that the chip can output discontinuous pulse voltage, and the range of the voltage value is from tens to hundreds of millivolts in the vibration frequency range of 10–90 Hz. The maximum value that can be reached is 563 mV (at the vibration frequency of 18 Hz). The results of the test show that the harvester can output a relatively high voltage, which can meet the general electric power demand of a WSN sensor node.
机译:本文提出了一种用于无线传感器网络(WSN)传感器节点的电源自供电模块。该模块包括基于微机电系统(MEMS)技术的电磁振动能量采集器和处理电路。本文介绍的振动能量收集器是通过集成的微细加工工艺制造的,由四个相似且相对独立的梁振动元件组成。处理电路的主要功能是将收割机的输出从不稳定的交流电(AC)转换为稳定的直流电(DC),为超级电容器充电,并确保超级电容器的稳定输出。收割机芯片的初步测试结果表明,该芯片可以输出不连续的脉冲电压,并且在10–90 Hz的振动频率范围内,电压值的范围为数十至数百毫伏。可以达到的最大值是563 mV(在18 Hz的振动频率下)。测试结果表明,收割机可以输出相对较高的电压,可以满足WSN传感器节点的一般电力需求。

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