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Dynamic phenomena and analysis of MEMS capacitive power harvester subjected to low-frequency excitations

机译:低频激励下的MEMS电容式能量采集器的动态现象与分析

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摘要

We study power harvesting using MEMS capacitors with single and dual air cavities that have been fabricated in our laboratory. Our goal is to achieve power harvesting from vibration sources with limited amplitude and with frequencies that are well below the resonance frequency of the fabricated device. The mathematical model includes the electrostatic forces and the forces provided by stoppers which are designed to prevent the direct contact between the capacitive plates. Global bifurcation analysis of the model illustrates the effect of the electrostatic force on the static equilibrium, the resonance frequency, and the regions of stability surrounding the equilibrium. The electrostatic forces are shown to reduce the resonance frequency at the cost of shrinking the stable domain of oscillation near the equilibrium. The inclusion of the mechanical stoppers make power harvesting still possible when the plate motion exceeds the stable domain so long as the two capacitive plates are kept at a distance to prevent the electrostatic force to dominate. Moreover, when the two plates are kept sufficiently separated, rocking instability the instability leading to non-parallel motion between the two plates is also prevented.
机译:我们使用在我们的实验室中制造的具有单气孔和双气孔的MEMS电容器研究功率收集。我们的目标是从振幅有限且频率远低于所制造设备的共振频率的振动源中收集功率。数学模型包括静电力和由塞子提供的力,塞子旨在防止电容板之间直接接触。该模型的整体分叉分析说明了静电力对静态平衡,共振频率以及围绕平衡的稳定区域的影响。显示出静电力以减小平衡附近的稳定振荡域为代价降低了共振频率。只要板的运动超出稳定范围,只要两个电容板保持一定距离以防止静电力占主导地位,机械止动件的包括仍可实现功率收集。而且,当两个板保持充分分开时,摇摆不稳定性也防止了导致两个板之间不平行运动的不稳定性。

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