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Dynamic Characterization of a Bistable Energy Harvester Under Gaussian White Noise for Larger Time Constant

机译:高斯白噪声下较大时间常数下双稳态能量采集器的动态特性

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摘要

In this paper, the system parameters of a nonlinear bistable energy harvester excited by Gaussian white noise was investigated. Using Fokker-Planck-Kolmogorov equation, the probability distribution functions of displacement and velocity of the oscillator are obtained. The effect of various system parameters on the probability distributions of displacement and velocity of the oscillator and the mean square of the output voltage are investigated when the time constant of the piezoelectric circuit takes a larger value to achieve maximum voltage gain. The maximum peak values of the joint probability distribution of displacement and velocity of the oscillator decrease with the larger values of noise strength. The effect of parameters of bistable potential function on mean square of output voltage was also investigated. The system equations are numerically solved and mean square value of output voltage is numerically estimated and is seen to be increased as noise intensity increases and decreased as viscous damping increases. The result also shows that better power output can be achieved when the time constant takes larger value.
机译:本文研究了由高斯白噪声激发的非线性双稳态能量采集器的系统参数。利用Fokker-Planck-Kolmogorov方程,获得了振子位移和速度的概率分布函数。当压电电路的时间常数取较大值以获得最大电压增益时,研究了各种系统参数对振荡器位移和速度的概率分布以及输出电压均方的影响。振荡器的位移和速度的联合概率分布的最大峰值随噪声强度的值的增大而减小。还研究了双稳态电势函数的参数对输出电压均方的影响。对系统方程进行数值求解,并对输出电压的均方根进行数值估算,并发现其随噪声强度的增加而增加,随粘性阻尼的增加而减小。结果还表明,当时间常数取较大值时,可以实现更好的功率输出。

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