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Feasibility study of a 3D vibration-driven electromagnetic MEMS energy harvester with multiple vibration modes

机译:具有多种振动模式的3D振动驱动电磁MEMS能量采集器的可行性研究

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摘要

A novel electromagnetic energy harvester (EH) with multiple vibration modes has been developed and characterized using three-dimensional (3D) excitation at different frequencies. The device consists of a movable circular-mass patterned with three sets of double-layer aluminum (Al) coils, a circular-ring system incorporating a magnet and a supporting beam. The 3D dynamic behavior and performance analysis of the device shows that the first vibration mode of 1285 Hz is an out-of-plane motion, while the second and third modes of 1470 and 1550 Hz, respectively, are in-plane at angles of 60° (240°) and 150° (330°) to the horizontal (x-) axis. For an excitation acceleration of 1 g, the maximum power density achieved are 0.444, 0.242 and 0.125 μW cm~(-3) at vibration modes of I, II and III, respectively. The experimental results are in good agreement with the simulation and indicate a good potential in the development of a 3D EH device.
机译:已经开发了具有多种振动模式的新型电磁能量采集器(EH),并使用了不同频率的三维(3D)激发进行了表征。该设备包括一个带有三组双层铝(Al)线圈的可移动圆形质量,一个结合了磁体和支撑梁的圆环系统。该设备的3D动态行为和性能分析表明,1285 Hz的第一振动模式是平面外运动,而1470和1550 Hz的第二和第三模式分别是平面内,角度为60与水平(x-)轴成°(240°)和150°(330°)。对于1 g的激励加速度,在I,II和III振动模式下,获得的最大功率密度分别为0.444、0.242和0.125μWcm〜(-3)。实验结果与仿真结果吻合良好,表明在开发3D EH设备方面具有良好的潜力。

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