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Modelling and Validation of Electret-Based Vibration Energy Harvesters in View of Charge Migration

机译:基于驻极体振动能量收割机的建模与验证鉴于电荷迁移

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One of the key problems of electret-based vibration energy harvester (eVEH) modelling is that the surface voltage itself cannot precisely reveal the charge storage characteristics of the electret fabricated by different processes. In this paper, we endeavor to interpret the charge migration mechanism of the eVEH with electrets fabricated by different processes. Based on the above analysis, a unified analytical model of the eVEH is derived accordingly. The dynamic response and voltage output predicted by this model are verified numerically by the equivalent circuit simulation and experimentally with an out-of-plane eVEH prototype. According to the analysis, the maximum power output is approximately 255 mu W when the prototype works at its resonance frequency and the vibration amplitude is 1 mm. This paper elucidates the working principle of the eVEH and provides a framework for further theoretical study of eVEHs from the first principle.
机译:驻极体基振动能量收割机(EVEH)建模的一个关键问题是,表面电压本身不能精确地揭示由不同工艺制造的驻极体的电荷存储特性。 在本文中,我们努力解释EVEH的电荷迁移机制,通过不同方法制造的电器。 基于上述分析,相应地衍生EVEH的统一分析模型。 该模型预测的动态响应和电压输出由等效电路仿真和实验用平面外eVEH原型进行验证。 根据分析,当原型在其共振频率下工作时,最大功率输出约为255μW,振动幅度为1毫米。 本文阐明了EVEH的工作原理,为来自第一个原则的EVEHS的进一步理论研究提供了框架。

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