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Characterization and Modeling of Nonlinearities in In-Plane Gap Closing Electrostatic Energy Harvester

机译:平面间隙闭合静电能量采集器中的非线性特征与建模

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This paper investigates in detail a micro scale in-plane gap closing electrostatic energy harvester with strong nonlinearities in squeeze-film damping, electromechanical coupling, and impacts on end-stops. The device shows softening response on increasing the bias voltage and saturation behavior on impact with end-stops at high enough acceleration amplitude. We demonstrate that a lumped model can adequately describe the measured nonlinear behavior for a range of operating conditions with nonlinear fluid damping force and impact force included in the model. While modeling capacitances, a finite-element method (FEM) is used to analyze fringing field effects on the capacitance variation for gap closing electrodes. The nominal capacitance is obtained from FEM analysis, for a range of under-cut values in the fabrication process treated as a free parameter in the model. The device modeled for linear and nonlinear squeeze-film damping force highlights the importance of nonlinear damping force to understand the device behavior over the range of operating conditions. With the compliant end-stops treated as spring-dampers and with proper choice of end-stop damping-coefficient, the model successfully captures the end-stop nonlinearities for a particular operating point and reproduces the dynamic pull-in phenomena at 8 V bias, and rms acceleration 0.6 , as observed in the experiments. Thus, the model described in this paper reproduces the subtle nonlinear effects dominating the dynamics of an in-plane gap closing electrostatic energy harvester. [2015-0107]
机译:本文详细研究了一种微型平面内间隙闭合静电能量收集器,该收集器在挤压膜阻尼,机电耦合以及对终端止动器的影响方面具有很强的非线性。该器件在增加偏置电压时表现出软化响应,而在具有足够高的加速度幅度的端部止动装置的冲击下显示出饱和行为。我们证明,集总模型可以在模型中包含非线性流体阻尼力和冲击力的情况下,充分描述在一定范围的工作条件下测得的非线性行为。在对电容建模时,使用有限元方法(FEM)分析边缘电场对间隙闭合电极电容变化的影响。对于在制造过程中作为模型中的自由参数的一系列底切值,可以从FEM分析获得标称电容。为线性和非线性挤压膜阻尼力建模的设备强调了非线性阻尼力对于了解设备在整个工作条件范围内的行为的重要性。通过将顺应的挡块视为弹簧阻尼器,并适当选择挡块的阻尼系数,该模型成功捕获了特定工作点的挡块非线性,并再现了在8 V偏置下的动态吸合现象,实验中观察到的均方根加速度为0.6。因此,本文中描述的模型再现了细微的非线性效应,该效应主导着平面内间隙闭合静电能量收集器的动力学。 [2015-0107]

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