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Wideband and 2D vibration energy harvester using multiple magnetoelectric transducers

机译:使用多个磁电换能器的宽带和二维振动能量采集器

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摘要

This paper investigates a magnetoelectric (ME) vibration energy harvester that can scavenge energy in arbitrary directions in a plane as well as wide working bandwidth. In this harvester, a circular cross-section cantilever rod is adopted to extract the external vibration energy due to the capability of it's free end oscillating in arbitrary in-plane directions. And permanent magnets are fixed to the free end of the cantilever rod, causing it to experience a non-linear force as it moves with respect to stationary ME transducers and magnets. The magnetically coupled cantilever rod exhibits a nonlinear and two-mode motion, and responds to vibration over a much broader frequency range than a standard cantilever. The effects of the magnetic field distribution and the magnetic force on the harvester's voltage response are investigated with the aim to obtain the optimal vibration energy harvesting performances. A prototype harvester was fabricated and experimentally tested, and the experimental results verified that the harvester can extract energy from arbitrary in-plane directions, and had maximum bandwidth of 5.5 Hz, and output power of 0.13 mW at an acceleration of 0.6 g (with g=9.8 ms(-2)).
机译:本文研究了一种磁电(ME)振动能量收集器,该能量收集器可以在平面中的任意方向上清除能量,并具有较宽的工作带宽。在该收割机中,由于其自​​由端可在任意平面内方向振动,因此采用圆形横截面的悬臂杆提取外部振动能量。永磁体固定在悬臂杆的自由端,使悬臂杆相对于固定的ME换能器和磁体移动时受到非线性力的作用。磁耦合的悬臂杆表现出非线性和双模运动,并且在比标准悬臂杆宽得多的频率范围内对振动做出响应。为了获得最佳的振动能量采集性能,研究了磁场分布和磁力对采集器电压响应的影响。制造了原型收割机并进行了实验测试,实验结果证明,该收割机可以从任意平面内方向提取能量,最大带宽为5.5 Hz,在0.6 g加速度下的输出功率为0.13 mW(g = 9.8毫秒(-2))。

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