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Residual aperiodic stochastic resonance in a bistable dynamic system transmitting a suprathreshold binary signal

机译:双稳态动态系统中传输超阈值二进制信号的残余非周期性随机共振

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Conventional stochastic resonance can be viewed as an amplitude effect, in which a small (subthreshold) input signal receives assistance from noise to trigger a stronger response from a nonlinear system. We demonstrate another mechanism of improvement by the noise, which is more of a temporal effect. An intrinsically slow system has difficulty to respond to a fast (suprathreshold) input, and the noise plays a constructive role by spurring the system for a more efficient response. The possibility of this form of stochastic resonance is established and studied here in a double-well bistable dynamic system, driven by a suprathreshold random binary signal, with the noise accelerating the switching between wells.
机译:传统的随机共振可以看作是幅度效应,其中小的(阈值)输入信号会受到噪声的辅助,从而触发非线性系统产生更强的响应。我们证明了噪声改善的另一种机制,这更多是时间效应。本质上较慢的系统很难响应快速(阈值)输入,并且噪声通过激励系统以获得更有效的响应而发挥了建设性的作用。在由超阈值随机二进制信号驱动的双井双稳态动态系统中,建立并研究了这种形式的随机共振的可能性,并且噪声加速了井之间的切换。

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