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Vibrational resonance in a noisy bistable system: nonfeedback control of stochastic resonance

机译:嘈杂的双稳态系统中的振动共振:随机共振的非抗冲冲击控制

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We present theoretical and experimental results on the effect of additive noise on vibrational resonance (VR), occuring in a bistable system excited by two periodic forces with very different frequencies. In the noiseless case, the phenomenon shows up as a parametric amplification of the low-frequency (LF) signal near the onset of bistability controlled by the additional high-frequency modulation. The presence of noise leads to the diminution of the gain factor (G) and signal-to-noise ratio (SNR) for the LF signal which obey scaling laws depending on the noise intensity. At the same time both G and SNR are always higher than the ones which could be obtained in the same conditions through the use of stochastic resonance (SR). As a consequence, VR can be used for the effective nonfeedback control of SR in noisy bistable systems. The experimental results obtained in a bistable vertical cavity surface emitting laser are compared with the theory showing a good agreement.
机译:我们呈现了对振动共振(VR)对振动共振(VR)的影响的理论和实验结果,其在由具有非常不同的频率激发的双稳态系统中发生的。在无噪声的情况下,该现象显示为通过附加的高频调制控制的双态性能附近的低频(LF)信号的参数放大。噪声的存在导致增益因子(g)和信噪比(SNR)的减少,这是根据噪声强度遵循缩放定律的LF信号的增益噪声比(SNR)。同时,G和SNR始终高于通过使用随机共振(SR)在相同条件下获得的那些。结果,VR可用于嘈杂的双稳态系统中SR的有效非抗性控制。与显示良好一致性的理论进行比较在双稳态垂直腔表面发射激光器中获得的实验结果。

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