使用嵌入式垂直移动质能采集器的二次冲击带宽效果

N. Jackson
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引用次数: 1

摘要

窄带宽被认为是MEMS压电能量采集器的主要限制。最近的研究表明,在固定质量中嵌入垂直移动质量是增加带宽的可行选择。这个概念通过改变悬臂梁振荡期间的有效质量来运作。由可动物体的弹跳引起的二次冲击力导致了非线性动力学。本文研究了由于活动质量的弹跳而产生的冲击力和二次冲击力的影响。使用多个可移动质量球来研究这一现象,这些球可以使弹跳发生,也可以消除弹跳,以确定二次冲击对带宽的作用。结果表明,有二次弹跳影响的质量的带宽(26 Hz)明显大于无弹跳影响的质量(4.32 Hz)。然而,由于有效质量的变化,非弹跳质量仍然比非运动质量(1.3 Hz)提供更高的带宽。与静止质量和非弹跳质量相比,质量的二次冲击产生具有多个频率的复杂输出波形,其输出波形表现为线性正弦。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Secondary Impact bandwidth effects using Embedded Vertical Moving Mass Energy Harvester
Narrow bandwidths is considered a major limitation of MEMS piezoelectric energy harvesters. Recent research has demonstrated that vertical moving masses embedded within a stationary mass is a viable option to increasing bandwidth. The concept operates by altering the effective mass during oscillation of the cantilever. Secondary impact forces caused from bouncing of the movable mass results in non-linear dynamics. This paper investigates the effect of the impact force and secondary impact forces due to the bouncing movable mass. The phenomenon was investigated using multiple movable mass balls which either enable or eliminate bouncing to determine the role that secondary impacts have on bandwidth. The results demonstrate that masses with secondary bouncing impacts have significantly larger bandwidth (26 Hz) compared to non-bouncing masses (4.32 Hz). However, the non-bouncing masses still provide higher bandwidth than a non-moving mass (1.3 Hz), due to the change in effective mass. The secondary impact of the mass generates complex output waveforms with multiple frequencies compared to a stationary mass and non-bouncing masses which demonstrate linear sinusoidal output waveforms.
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