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Optimization and Performance Improvement of an Electromagnetic-type Energy Harvester with Consideration of Human Walking Vibration

机译:考虑人体步行振动的电磁式能量采集器的优化与性能改进

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摘要

In this study, we derived an equation of motion for an electromechanical system in view of the components and working mechanism of an electromagnetic-type energy harvester (ETEH). An electromechanical transduction factor (ETF) was calculated using a finite-element analysis (FEA) based on Maxwell's theory. The experimental ETF of the ETEH measured by means of sine wave excitation was compared with and FEA data. Design parameters for the stationary part of the energy harvester were optimized in terms of the power performance by using a response surface method (RSM). With optimized design parameters, the ETEH showed an improvement in performance. We experimented with the optimized ETEH (OETEH) with respect to changes in the external excitation frequency and the load resistance by taking human body vibration in to account. The OETEH achieved a performance improvement of about 30% compared to the initial model.
机译:在这项研究中,鉴于电磁型能量收集器(ETEH)的组件和工作机理,我们推导出了机电系统的运动方程。根据麦克斯韦理论,使用有限元分析(FEA)计算出机电转换因子(ETF)。将通过正弦波激励测量的ETEH的实验ETF与FEA数据进行了比较。通过使用响应曲面方法(RSM)在能量性能方面优化了能量收集器固定部分的设计参数。通过优化的设计参数,ETEH的性能得到了改善。考虑到人体振动,我们针对外部激励频率和负载电阻的变化对优化的ETEH(OETEH)进行了实验。与原始模型相比,OETEH的性能提高了约30%。

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