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ROBUSTNESS OF NONLINEAR ELECTROMAGNETIC VIBRATION ENERGY HARVESTER SUBJECTED TO RANDOM EXCITATION

机译:非线性电磁振动能量收割机的鲁棒性对随机激励进行

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Vibration Energy Harvesters (VEHs) are devices used to collect mechanical energy from the surrounding environment to supply low power electronic systems such as Wireless Sensor Nodes. In this paper, we introduce an electromagnetic VEH model and a semi-analytical method called Moment Equation Copula Closure (MECC) that is compared to Monte Carlo simulations. Those methods are then used to derive the maximum power that can be extracted from random vibration before analyzing the effect of cubic stiffness nonlinearity on the VEH robustness against the variation of the excitation spectrum. Unlike bistable nonlinearity, it is shown that Duffing nonlinearity can be used to enhance the VEH power density and robustness with a limited effect on the harvested power.
机译:振动能量收割机(阀芯)是用于从周围环境收集机械能的装置,以提供低功率电子系统,例如无线传感器节点。在本文中,我们引入了一种电磁VV车辆模型和称为瞬间方程Copula封闭(MECC)的半分析方法,与Monte Carlo模拟相比。然后使用这些方法来得出可以从随机振动中提取的最大功率,然后分析立方刚度非线性对抗激励谱的变化的鲁布利的影响。与双稳态非线性不同,示出Duffing非线性可用于增强车辆功率密度和鲁棒性,其对收获功率有限。

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