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Noise-induced chaos in the elastic forced oscillators with real-power damping force

机译:具有有功阻尼力的弹性强迫振荡器中的噪声引起的混沌

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摘要

The chaotic behavior of the elastic forced oscillators with real-power exponents of damping and restoring force terms under bounded noise is investigated. By using random Melnikov method, a mean square criterion is used to detect the necessary conditions for chaotic motion of this stochastic system. The results show that the threshold of bounded noise amplitude for the onset of chaos in the system increases as the intensity of the random frequency increases, and decrease as the real-power exponent of damping term increase. The threshold of bounded noise amplitude for the onset of chaos is determined by the numerical calculation via the largest Lyapunov exponents. The effects of bounded noise and real-power exponent of damping term on bifurcation and Poincaré map are also investigated. Our results may provide a valuable guidance for understanding the effect of bounded noise on a class of generalized double well system.
机译:研究了在有限噪声下具有阻尼力和恢复力项的有功幂指数的弹性强迫振荡器的混沌行为。通过使用随机梅尔尼科夫方法,均方准则用于检测该随机系统混沌运动的必要条件。结果表明,随着随机频率强度的增加,系统中混沌开始的有界噪声幅度阈值增大,而阻尼项的有功指数增大则阈值减小。通过最大李雅普诺夫指数的数值计算,确定了混沌开始时有界噪声幅度的阈值。还研究了边界噪声和阻尼项的有功功率指数对分叉图和庞加莱图的影响。我们的结果可能为理解有限噪声对一类广义双井系统的影响提供有价值的指导。

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