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The limiting effect of electromechanical coupling in self-biased electrostatic Vibration Energy Harvester

机译:机电耦合对自偏置静电振动能量采集器的限制作用

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This paper reports on the drastic impact of the electromechanical coupling on the operating mode of a MEMS electrostatic Vibration Energy Harvester (e-VEH). A similar behavioral pattern was observed for two different conditioning circuits, which biased the e-VEH: one based on a classical charge pump circuit and one based on the Bennet doubler. The result of this study mitigates the commonplace opinion about the need of maximization of the bias voltage of electromechanical transducer for optimization of the converted power. When the circuits operated in self-biasing mode, in which the reservoir capacitor voltage increases exponentially for weak voltages, a slow down and saturation were consequently observed at average and high voltages. It is due to several phenomena, among which the nonlinear dynamics of the system, increase of the electromechanical damping with bias voltage, and basically by the fundamental limitation of the power that can be extracted from external vibrations.
机译:本文报道了机电耦合对MEMS静电振动能量收集器(e-VEH)的运行模式的巨大影响。对于两个不同的调节电路,观察到了类似的行为模式,这使e-VEH产生了偏差:一个基于经典电荷泵电路,另一个基于Bennet倍增器。这项研究的结果减轻了关于最大化机电转换器的偏置电压来优化转换功率的普遍看法。当电路以自偏置模式工作时,其中存储电容器的电压对于弱电压呈指数增长,因此在平均电压和高电压下会观察到减速和饱和。这归因于多种现象,其中包括系统的非线性动力学,带有偏置电压的机电阻尼的增加以及基本上是由于可以从外部振动中提取出的功率的基本限制。

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