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首页> 外文期刊>IEEE Transactions on Power Electronics >A Mathematical Model for Self-Priming Circuits: Getting the Most From a Dielectric Elastomer Generator
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A Mathematical Model for Self-Priming Circuits: Getting the Most From a Dielectric Elastomer Generator

机译:自吸电路的数学模型:充分利用介电弹性体发生器

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摘要

A dielectric elastomer generator (DEG) can be used for converting mechanical energy from natural motion sources, such as walking, waves, trees, etc., into electrical energy. A DEG is comprised of a soft and flexible dielectric elastomer (DE) capacitor, a priming circuit (PC), which transfers high potential charge onto/off the DE electrodes, and a power extraction circuit that harvests the generated power. To generate power, the PC must charge and discharge the DE in synchronization with the DE's capacitance change. A simple circuit to do this exists: the self-priming circuit (SPC). The SPC consists of diodes and capacitors that passively switch between charge delivery and charge receiving states in synchronization with the DE's capacitance change. Until now, there has been no understanding of how to design an SPC in order to maximize harvested energy from the DE. A new mathematical model for an SPC is presented, leading to design and optimization. An accuracy of 0.1% between model, simulation, and experiment over five cycles is obtained, once losses are taken into consideration. The behavior of the SPC is shown to be related to the maximum and minimum capacitances of the DE, but is unaffected by the exact shape of the capacitance waveform.
机译:介电弹性体发生器(DEG)可用于将来自自然运动源(如步行,波浪,树木等)的机械能转换为电能。 DEG包括一个柔软而柔软的介电弹性体(DE)电容器,一个将高电势电荷转移到DE电极上/从DE电极上转移的启动电路(PC)和一个收集产生的功率的功率提取电路。为了发电,PC必须与DE的电容变化同步地对DE充电和放电。存在执行此操作的简单电路:自吸电路(SPC)。 SPC由二极管和电容器组成,它们与DE的电容变化同步地在电荷输送和电荷接收状态之间被动切换。到目前为止,还没有了解如何设计SPC来最大化从DE收集的能量。提出了用于SPC的新数学模型,从而进行了设计和优化。一旦考虑到损失,在五个周期内的模型,仿真和实验之间的精度为0.1%。 SPC的行为显示与DE的最大和最小电容有关,但不受电容波形的精确形状影响。

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