Numerical simulation of double impact 2DOF triboelectric energy harvesting for extended bandwidth

M. Hassan, Alwathiqbellah Ibrahim
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Abstract

Increasing the bandwidth of the vibration energy harvesters is one of the research emphases to maximize the energy harvested from the ambient. Here we design a Two-Degree of Freedom Vibro-impact Triboelectric energy harvester with a double-impact configuration, which combines multi-modality and piecewise linearity to improve the harvesting bandwidth of triboelectric energy harvesters. The harvester structure consists of primary and secondary cantilever beams with two integrated energy harvesters. The two beams are designed to operate at close natural frequencies, and under the effect of the impact, triboelectricity is generated, and the bandwidths of the resonators are combined to create a wide bandwidth. The double impact system is investigated numerically to examine the structure’s dynamic behavior at different excitation levels, separation distance, and surface charge density to extract an optimal parameter for achieving a wide combined bandwidth. The system demonstrates the capability of connecting multi-modality and piecewise linearity to significantly broaden the triboelectric energy harvester’s bandwidth.
扩展带宽双冲击二自由度摩擦电能量采集的数值模拟
提高振动能量采集器的带宽是研究的重点之一,以最大限度地从环境中收集能量。本文设计了一种双冲击结构的两自由度振动冲击式摩擦电能量采集器,将多模态和分段线性相结合,提高了摩擦电能量采集器的采集带宽。能量采集器结构由主、次悬臂梁和两个集成能量采集器组成。这两束光束被设计成在接近的固有频率下工作,在撞击的作用下,产生摩擦电,谐振器的带宽被组合在一起,形成一个宽的带宽。对双冲击系统进行了数值研究,考察了结构在不同激励水平、分离距离和表面电荷密度下的动态行为,以提取出实现较宽组合带宽的最佳参数。该系统证明了连接多模态和分段线性的能力,从而显着拓宽了摩擦电能量采集器的带宽。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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