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Stochastic response of bistable vibration energy harvesting system subject to filtered Gaussian white noise

机译:高斯白噪声滤波后的双稳态振动能量采集系统的随机响应。

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摘要

Mechanical vibrations have been proved to be a clean and reliable energy source, especially the bistable model can enhance the efficiency of vibration energy harvesting under the case of low-level vibration and attracts more and more attention. In this manuscript, an improved coordinate transformation, based on the equilibrium points of bistable vibration energy harvesting (BVEH) system, is proposed to construct a quasi-conservative stochastic averaging procedure, and this method is applied to the nonlinear BVEH system driven by filtered Gaussian white noise to obtain the dynamic behaviors. Through this transformation, the nonlinear electromechanical coupling BVEH system can be approximated by an equivalent single degree of freedom bistable system, which contains the energy-dependent frequency functions and the equilibrium points. The analytic expressions of the stationary probability density function of the system state can be obtained by the quasi-conservative stochastic averaging method, and by applying the relationship between the output voltage and the state variables of the system, the mean-square output voltage (MSOV) and the mean output power (MOP) will be obtained. Finally, the variation trends of MSOV and MOP depended on the physical quantities of stochastic BVEH system, such as the excitation intensity and the peak frequency of seismic motion of the filtered Gaussian white noise, the parameters of the vibration system and the electromechanical coupling coefficients, are also analyzed in detail. Corresponding theoretical results are well verified through the direct Monte Carlo simulation. (C) 2019 Elsevier Ltd. All rights reserved.
机译:机械振动已被证明是一种清洁可靠的能源,尤其是双稳态模型可以在低水平振动的情况下提高振动能量收集的效率,并引起越来越多的关注。本文基于双稳态振动能量收集(BVEH)系统的平衡点,提出了一种改进的坐标变换,以构造准保守随机平均程序,并将该方法应用于滤波高斯驱动的非线性BVEH系统白噪声以获得动态行为。通过这种变换,可以用等效单自由度双稳态系统近似非线性机电耦合BVEH系统,该系统包含能量相关的频率函数和平衡点。系统状态的平稳概率密度函数的解析表达式可以通过准保守随机平均法得到,并通过应用输出电压与系统状态变量之间的关系,均方输出电压(MSOV) ),则将获得平均输出功率(MOP)。最后,MSOV和MOP的变化趋势取决于随机BVEH系统的物理量,例如滤波后的高斯白噪声的激发强度和地震运动的峰值频率,振动系统的参数以及机电耦合系数,也进行了详细分析。相应的理论结果通过直接蒙特卡洛模拟得到了很好的验证。 (C)2019 Elsevier Ltd.保留所有权利。

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