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Research on Stochastic Resonance Detection Method for Periodic Signals under Low SNR and α -Stable Noise

机译:低SNR和α可噪声下周期信号随机共振检测方法的研究

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In Dual Sequence Frequency Hopping (DSFH) communication mode, aiming at improving the detection performance to weak signal under low signal-to-noise ratio (SNR) conditions, stochastic resonance (SR) detection method is proposed. First, the α -stable distribution is used as the impulsive noise model and the influence of α value on the properties of α -stable noise is analyzed. Second, the transmitting and receiving signal model of DSFH communication system is introduced. The SR method is used to detect DSFH signal. In order to analyze the output signal, the fractional Fokker–Planck equation (FFPE) is established, and a new simplified solution method based on sampling decision time is proposed to solve the time-varying fractional differential equation. Base on the theoretical solution of FFPE, a binary hypothesis test statistic is constructed to quantify the signal detection probability and false alarm probability, and the detection performance is analyzed. Finally, simulation experiments verify the theoretical conclusions. The minimum effective SNR for SR detection is obtained, and it is about ?20?dB, which provides a theoretical basis for the application of SR in the DSFH communication system.
机译:在双序频率跳频(DSFH)通信模式中,旨在在低信噪比(SNR)条件下提高对弱信号的检测性能,提出随机谐振(SR)检测方法。首先,使用α-urable分布作为脉冲噪声模型,分析了α值对α-ukable噪声性质的影响。其次,介绍了DSFH通信系统的发送和接收信号模型。 SR方法用于检测DSFH信号。为了分析输出信号,建立了分数Fokker-Planck等式(FFPE),提出了一种基于采样决定时间的新的简化解决方法来解决时变分数差分方程。基于FFPE的理论解决方案,构造了二进制假设试验统计,以量化信号检测概率和误报概率,分析检测性能。最后,仿真实验验证了理论结论。获得SR检测的最小有效SNR,它是关于20?DB的,为SR应用于DSFH通信系统提供了理论依据。

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