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首页> 外文期刊>Energy Conversion & Management >Synchronized Switch Harvesting on ElectroMagnetic System: a nonlinear technique for hybrid energy harvesting based on active inductance
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Synchronized Switch Harvesting on ElectroMagnetic System: a nonlinear technique for hybrid energy harvesting based on active inductance

机译:电磁系统上的同步开关收集:基于有源电感的混合能量收集的非线性技术

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摘要

This paper proposes a hybrid nonlinear interface combining both piezoelectric and electromagnetic effects for energy harvesting purposes. Based on the previously developed Synchronized Switch Harvesting on Inductor (SSHI) scheme, this technique aims at including as much as electroactive parts as possible, thus advantageously replacing the passive inductance in the SSHI approach by an electromagnetic transducer. The proposed scheme, called Synchronized Switch Harvesting on ElectroMagnetic system (SSH-EM) results in a significant increase of the output voltage, thus leading to a consequential increase of the harvested power, especially in the case of low-coupled systems, when compared to the classical SSHI approach and the standard approach (Le., directly connecting the piezoelectric element to the load through a diode bridge rectifier and a smoothing capacitor). The working principle, along with theoretical developments, and supporting experimental results, are presented, both considering structures featuring constant displacement magnitude or structures driven at their resonance frequency with a constant excitation magnitude.
机译:本文提出了一种混合非线性界面,将压电效应和电磁效应结合在一起以进行能量收集。基于先前开发的电感同步开关收集(SSHI)方案,该技术旨在尽可能多地包含电活性部件,从而以电磁换能器替代SSHI方法中的无源电感。所提议的方案称为电磁系统上的同步开关收集(SSH-EM)导致输出电压显着增加,从而导致所收集的功率相应增加,尤其是在低耦合系统的情况下,与经典SSHI方法和标准方法(例如,通过二极管桥式整流器和平滑电容器将压电元件直接连接到负载)。介绍了工作原理,以及理论发展和支持的实验结果,都考虑了具有恒定位移大小的结构或以其共振频率驱动且具有恒定激励大小的结构。

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