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Capturing energy through a shoe-mounted piezoelectric energy harvester

机译:通过靴式压电能量收集器捕获能量

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摘要

This paper presents a shoe-mounted piezoelectric energy harvester (PEH) with intent to scavenge energy from human walking. The proposed PEH comprises of four piezoelectric cantilever beams magnetically coupled with a spring-mass system. Theoretical design and analysis were carried out using the standard accelerations obtained by fitting the experimental data. A prototype was also fabricated and its feasibility was verified by experimental tests. The results indicate that the four beams can be triggered multiple times by the spring-mass system within one step when the PEH is subjected to accelerations along the tibial axis. This operating principle realizes frequency up-conversion and brings about higher conversion efficiency. The superposition of voltage outputs generated by accelerations coming from two orthogonal directions is also achieved with the proposed design, endowing the proposed PEH with better functionality. The peak voltage output from each beam is as large as 10 V when the walking speed ranges from 2 km/h to 8 km/h.
机译:本文介绍了一种鞋式安装的压电能量收集器(PEH),其目的是清除人类步行时产生的能量。提出的PEH包括四个压电悬臂梁,这些悬臂梁与弹簧质量系统电磁耦合。使用通过拟合实验数据获得的标准加速度进行理论设计和分析。还制作了一个原型,并通过实验测试验证了其可行性。结果表明,当PEH沿胫骨轴加速时,弹簧-质量系统可以在一个步骤内多次触发四个梁。该工作原理实现了频率上变频并带来了更高的转换效率。所提出的设计也实现了由来自两个正交方向的加速度产生的电压输出的叠加,从而使所提出的PEH具有更好的功能。当步行速度从2 km / h到8 km / h时,每个光束的峰值电压输出高达10V。

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