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Binary modulated signal detection in a bistable receiver with stochastic resonance

机译:具有随机共振的双稳态接收机中的二进制调制信号检测

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摘要

The archetypal bistable system can act as a nonlinear receiver for detecting binary signals modulated by amplitude, frequency, or phase. The introduction of noise enhances signal detection for a certain range of noise intensity, which is ascribed to non-conventional stochastic resonance (SR) phenomena, such as residual aperiodic SR and short-time SR. For the first time, we unify binary modulated signal detection from the point of view of an approximate probability density model. We develop both theoretical and numerical analyses of the receiver performance for each type of modulated signal. The optimization of receiver parameters and comparisons of the optimal bistable receiver versus the linear matched filter are also investigated. An interesting result is that the probability density model enables us to explore the SR range of noise intensity and the optimally-tuned bistable receiver theoretically, which may play a prominent role for nonlinear systems performing in noisy conditions. (c) 2006 Elsevier B.V. All rights reserved.
机译:原型双稳态系统可以充当非线性接收器,以检测由幅度,频率或相位调制的二进制信号。噪声的引入增强了在一定强度范围内的信号检测能力,这归因于非常规随机共振(SR)现象,例如残留非周期性SR和短时SR。第一次,我们从近似概率密度模型的角度统一了二进制调制信号检测。我们针对每种类型的调制信号开发了接收机性能的理论和数值分析。还研究了接收器参数的优化以及最佳双稳态接收器与线性匹配滤波器的比较。一个有趣的结果是,概率密度模型使我们能够从理论上探索噪声强度的SR范围和最佳调谐的双稳态接收器,这可能对在嘈杂条件下执行的非线性系统起着重要作用。 (c)2006 Elsevier B.V.保留所有权利。

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