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Magnetic levitation-based electromagnetic energy harvesting: a semi-analytical non-linear model for energy transduction

机译:基于磁悬浮的电磁能量收集:能量转换的半解析非线性模型

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摘要

Magnetic levitation has been used to implement low-cost and maintenance-free electromagnetic energy harvesting. The ability of levitation-based harvesting systems to operate autonomously for long periods of time makes them well-suited for self-powering a broad range of technologies. In this paper, a combined theoretical and experimental study is presented of a harvester configuration that utilizes the motion of a levitated hard-magnetic element to generate electrical power. A semi-analytical, non-linear model is introduced that enables accurate and efficient analysis of energy transduction. The model predicts the transient and steady-state response of the harvester a function of its motion (amplitude and frequency) and load impedance. Very good agreement is obtained between simulation and experiment with energy errors lower than 14.15% (mean absolute percentage error of 6.02%) and cross-correlations higher than 86%. The model provides unique insight into fundamental mechanisms of energy transduction and enables the geometric optimization of harvesters prior to fabrication and the rational design of intelligent energy harvesters.
机译:磁悬浮已被用于实现低成本和免维护的电磁能量收集。基于悬浮的收割系统能够长时间自主运行的能力使其非常适合于为多种技术提供自供电。在本文中,提出了一种结合了理论和实验研究的收割机配置,该配置利用悬浮的硬磁元件的运动产生电能。引入了半分析,非线性模型,可以对能量转换进行准确而有效的分析。该模型根据收割机的运动(幅度和频率)和负载阻抗预测收割机的瞬态和稳态响应。在仿真和实验之间获得了很好的一致性,能量误差低于14.15%(平均绝对百分比误差为6.02%),互相关性高于86%。该模型提供了对能量传导基本机制的独特见解,并可以在制造和合理设计智能能量收集器之前对收集器进行几何优化。

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