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Damping Coefficient Induces Stochastic Multiresonance in Bistable System with Asymmetric Dichotomous Noise

机译:阻尼系数在非对称二分频双稳态双稳态系统中引起随机多共振

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Stochastic resonance (SR) and stochastic multiresonance (SMR) phenomena as a function of the underdamping and overdamping coefficients in bistable system with asymmetric dichotomous noise are investigated numerically. By the efficient numerical simulation of the asymmetric dichotomous noise and the fourth-order Runge-Kutta algorithm, we calculate the system responses, the averaged power spectrum, and the signal-noise-ratio (SNR) that can be a measure of the existence of SR and SMR phenomenon. And the effects of damping coefficients on the three characteristics are analyzed. Firstly, it is found that the periodic asymmetric distribution of the particle’s hopping between two potential wells in the system response is gradually weakened as underdamping coefficient is increased to overdamping coefficient. And it also displays the periodic asymmetric distribution under the circumstance of overdamping coefficient. Then the averaged power spectrum exhibits multiple sharp peaks, and the highest peak increases and decreases for underdamping coefficient which is added to overdamping coefficient. Finally, SNR versus the damping coefficient for the system parameters and the noise parameters are acquired and they show multiple peaks and valleys, which illustrates the obvious SMR phenomena in bistable system with asymmetric dichotomous noise.
机译:数值研究了具有非对称二分频噪声的双稳态系统中随机阻尼(SR)和随机多共振(SMR)现象与欠阻尼和过阻尼系数的关系。通过不对称二分频噪声的有效数值模拟和四阶Runge-Kutta算法,我们计算了系统响应,平均功率谱和信噪比(SNR),可以用来衡量是否存在噪声。 SR和SMR现象。并分析了阻尼系数对三个特性的影响。首先,我们发现,随着欠阻尼系数增加到过阻尼系数,系统响应中两个势阱之间粒子跳跃的周期性不对称分布逐渐减弱。并且在过阻尼系数的情况下也显示出周期不对称分布。然后,平均功率谱表现出多个尖峰,并且对于欠阻尼系数,最高峰增加或减少,而欠阻尼系数与过阻尼系数相加。最后,获得了系统参数和噪声参数的SNR与阻尼系数,并显示了多个峰和谷,这说明了在具有非对称二分频噪声的双稳态系统中,明显的SMR现象。

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