This paper investigates the parameter-induced stochastic resonance using experimental methods in an over-damped random linear system with asymmetric dichotomous noise. Non-monotonic dependence of signal-to-noise ratio...This paper investigates the parameter-induced stochastic resonance using experimental methods in an over-damped random linear system with asymmetric dichotomous noise. Non-monotonic dependence of signal-to-noise ratio on the system parameter is observed. Several potential applications of parameter-induced stochastic resonance are given in circuits.展开更多
本文从随机共振(Stochast ic Resonance)可增强信号信噪比的现象出发,介绍了随机共振非线性双稳势阱模型和参数调节随机共振理论。在此基础上,分析了随机共振现象在微弱信号接收中两种可能的应用途径,通过仿真验证了应用的可行性。最后...本文从随机共振(Stochast ic Resonance)可增强信号信噪比的现象出发,介绍了随机共振非线性双稳势阱模型和参数调节随机共振理论。在此基础上,分析了随机共振现象在微弱信号接收中两种可能的应用途径,通过仿真验证了应用的可行性。最后,分析提出了将随机共振理论应用于弱信号接收需要突破的三大关键技术,即:大参数信号变尺度与还原技术、参数自适应调节技术和调制信号随机共振技术,还提出了初步解决的思路。为拓宽随机共振现象的应用领域和探究解决低信噪比条件下的信号接收提供新的方法和途径。展开更多
文摘This paper investigates the parameter-induced stochastic resonance using experimental methods in an over-damped random linear system with asymmetric dichotomous noise. Non-monotonic dependence of signal-to-noise ratio on the system parameter is observed. Several potential applications of parameter-induced stochastic resonance are given in circuits.
文摘本文从随机共振(Stochast ic Resonance)可增强信号信噪比的现象出发,介绍了随机共振非线性双稳势阱模型和参数调节随机共振理论。在此基础上,分析了随机共振现象在微弱信号接收中两种可能的应用途径,通过仿真验证了应用的可行性。最后,分析提出了将随机共振理论应用于弱信号接收需要突破的三大关键技术,即:大参数信号变尺度与还原技术、参数自适应调节技术和调制信号随机共振技术,还提出了初步解决的思路。为拓宽随机共振现象的应用领域和探究解决低信噪比条件下的信号接收提供新的方法和途径。