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Stochastic resonance in a harmonic oscillator subject to random mass and periodically modulated noise

机译:谐振管中的随机共振受随机质量和定期调制噪声的影响

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摘要

In many practical systems, the periodic driven force and noise are introduced multiplicatively. However, the corresponding researches only focus on the first order moment of the system and its stochastic resonance phenomena. This paper investigates a harmonic oscillator subject to random mass and periodically modulated noise. Using Shapiro-Loginov formula and the Laplace transformation technique, the analytic expressions of the first-order and second-order moment are obtained. According to the analytic expressions, we find that although the first-order moment is always zero but second-order moment is periodic which is different from other harmonic oscillators investigated. Furthermore, we find the amplitude and average of second-order moment have a non-monotonic behavior on the frequency of the input signal, noise parameters and other system parameters. Finally, the numerical simulations are presented to verify the analytical results.
机译:在许多实际系统中,周期性驱动力和噪声是多样性地引入的。 然而,相应的研究仅关注系统的第一阶阶段及其随机共振现象。 本文调查谐振管,受随机质量和定期调制噪声。 使用Shapiro-Loginov公式和拉普拉斯变换技术,获得了一阶和二阶时刻的分析表达式。 根据分析表达式,我们发现,尽管一阶时刻总是零,但二阶时刻是与所研究的其他谐波振荡器不同的周期性。 此外,我们发现二阶时刻的幅度和平均值在输入信号,噪声参数和其他系统参数的频率上具有非单调行为。 最后,提出了数值模拟以验证分析结果。

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