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首页> 外文期刊>International journal of bifurcation and chaos in applied sciences and engineering >Suppression of jamming in excitable systems by aperiodic stochastic resonance
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Suppression of jamming in excitable systems by aperiodic stochastic resonance

机译:通过非周期性随机共振来抑制可激发系统中的干扰

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摘要

To suppress undesirable noise (jamming) associated with signals is important for many applications. Here we explor the idea of jamming suppression with realistic, aperiodic signals by stochastic resonance. In particular, we consider weak amplitude-modulated (AM), frequency-modulated (FM), and chaotic signals with strong, broad-band or narrow-band jamming, and show that aperiodic stochastic resonance occuring in an array of excitable dynamical systems can be effective to counter jamming. We provide formulas for quantitative measures characterizing the resonance. As excitability is ubiquitous in biological systems, our work suggests that aperiodic stochastic resonance may be a universal and effective mechanism for reducing noise associated with input signals for transmitting and processing information.
机译:对于许多应用来说,抑制与信号相关的不良噪声(干扰)很重要。在这里,我们探讨了通过随机共振对现实的非周期性信号进行干扰抑制的想法。特别是,我们考虑了弱振幅调制(AM),频率调制(FM)以及具有强,宽带或窄带干扰的混沌信号,并表明在一系列可激发动力系统中发生的非周期性随机共振可以有效地抗干扰。我们提供了表征共振的定量测量公式。由于兴奋性在生物系统中无处不在,因此我们的工作表明,非周期性随机共振可能是一种普遍有效的机制,可以减少与输入信号相关的噪声以传输和处理信息。

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