Finite Element Simulation and Comparison of Piezoelectric Vibration-Based Energy Harvesters with Advanced Electric Circuits

Andreas Hegendörfer, J. Mergheim
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Abstract

A system simulation method based on the Finite-Element Method (FEM) is applied to simulate a bimorph piezoelectric vibration-based energy harvester (PVEH) with different electric circuits: The standard circuit, the synchronized switch harvesting on inductor (SSHI) circuit and the synchronized electric charge extraction (SECE) circuit are considered. Moreover, nonlinear elasticity of the piezoelectric material is taken into account and different magnitudes of base excitations are applied. The holistic FEM-based system simulation approach allows the detailed evaluation of the influences of the considered electric circuits on the vibrational behavior of the PVEH. Furthermore, the harvested energy of the different applied electric circuits with respect to the magnitude of base excitation is compared and results from literature regarding the efficiency of electric circuits are confirmed.
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先进电路压电振动能量采集器的有限元仿真与比较
采用基于有限元法(FEM)的系统仿真方法,对双晶片压电振动能量采集器(PVEH)进行了不同电路的仿真:考虑了标准电路、电感同步开关采集电路(SSHI)和同步电荷提取电路(SECE)。此外,考虑了压电材料的非线性弹性,并施加了不同大小的基激励。基于有限元的整体系统仿真方法可以详细评估所考虑的电路对PVEH振动行为的影响。此外,还比较了不同应用电路的能量与基极激励的大小,并证实了文献中关于电路效率的结果。
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