Power and Bandwidth Enhancement through Asymmetric Bi-stable Design for Piezoelectric Energy Harvesters

Qingzhao Li, Xinbao Hou, Zhiwei Wang, Lanxing Qin, L. Bu
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Abstract

Efficiently collecting ambient vibrations has been the research hotspot of energy harvesting technology. In this paper, an asymmetric bi-stable energy harvester is proposed to tune the bandwidth as well as to enhance the output power. By only shifting the magnet positions from symmetric to asymmetric, and requiring no ancillary mechanical structures, asymmetric double potential wells can be constructed, working bandwidth can be extended, and average output power can be increased by 10.2%. Maximally, the asymmetric bi-stable energy harvester prototype generates root mean square voltage of 3.173V on 90.5MΩ resistance @9.5Hz excitation.
基于非对称双稳态设计的压电能量采集器功率和带宽增强
有效收集环境振动一直是能量收集技术的研究热点。本文提出了一种非对称双稳态能量采集器,可调频宽并提高输出功率。只需将磁体位置由对称向非对称移动,无需辅助机械结构,即可构建非对称双电位井,延长工作带宽,平均输出功率可提高10.2%。非对称双稳态能量采集器原型在90.5MΩ电阻@9.5Hz激励下,最大均方电压为3.173V。
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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