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Circuit nonlinearity effect on the performance of an electromagnetic energy harvester-structure system

机译:电路非线性对电磁能量收集器-结构系统性能的影响

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Scavenging energy from structural vibration requires an efficient energy harvesting circuit which could introduce nonlinearity into the harvester-structure system. This study examines the performance of a linear structure equipped with an Electromagnetic (EM) energy harvester connected to a nonlinear standard energy harvesting circuit (SEHC) consisting of a full-wave bridge rectifier and a capacitor in parallel with a resistor. To facilitate the understanding of the nonlinear circuit effect on the behavior of the coupled harvester-structure system under sinusoidal excitation, a first-order harmonic balance approximation method is employed. Numerical simulation and experimental study are conducted to validate the accuracy of the proposed approximation method. Results suggest that the blockage effect of diodes in the bridge rectifier in the SEHC should be reduced by using diodes with small voltage drop value or by designing an EM energy harvester with large electromechanical coupling coefficient to improve the vibration mitigation performance and to enhance the optimal energy harvesting capability of the EM energy harvester. Results also show that circuit nonlinearity should be considered in order to estimate the response of the system accurately.
机译:从结构振动中清除能量需要高效的能量收集电路,该电路可能将非线性引入收集器-结构系统。这项研究检查了配备电磁(EM)能量收集器的线性结构的性能,该能量收集器连接到非线性标准能量收集电路(SEHC),该电路由全波桥式整流器和与电阻并联的电容器组成。为了便于理解非线性电路对正弦激励下耦合的收割机-结构系统的行为的影响,采用了一阶谐波平衡近似方法。进行了数值模拟和实验研究,以验证所提出的近似方法的准确性。结果表明,应通过使用压降较小的二极管或设计具有较大机电耦合系数的EM能量收集器来降低SEHC中桥式整流器中二极管的阻塞效应,以改善减振性能并增强最佳能量EM能量收集器的收集能力。结果还表明,应考虑电路非线性,以便准确估计系统的响应。

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