2015Unpublished venueRequires access

Research on the method of weak signal detection based on bistable stochastic resonance

Zhonghu Li, Cai Zhiquan, Jinming Wang, Zheng Xinxin, Lin Zhang

Open publisher page 1 citations

Abstract

Weak signal which is submerged by strong noise in engineering is difficult to detect accurately. The bistable stochastic resonance (BSR) system is proposed in this paper to detect the weak signal. And some simulation researches, including single frequency signal stochastic resonance detection; multi frequency signal stochastic resonance detection and multistage stochastic resonance detection, are accomplished. Simulation results showed that the BSR system can effectively improve the signal to noise ratio of the output signal. Especially, the multistage stochastic resonance system has obvious advantages in the detection of weak signals submerged by strong noise.

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What this paper is about

Weak signal which is submerged by strong noise in engineering is difficult to detect accurately. The bistable stochastic resonance (BSR) system is proposed in this paper to detect the weak signal. And some simulation researches, including single frequency signal stochastic resonance detection; multi frequency signal stochastic resonance detection and multistage stochastic resonance detection, are accomplished. Simulation results showed that the BSR system can effectively improve the signal to noise ratio of the output signal. Especially, the multistage stochastic resonance system has obvious advantages in the detection of weak signals submerged by strong noise.

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Available abstract

Weak signal which is submerged by strong noise in engineering is difficult to detect accurately. The bistable stochastic resonance (BSR) system is proposed in this paper to detect the weak signal. And some simulation researches, including single frequency signal stochastic resonance detection; multi frequency signal stochastic resonance detection and multistage stochastic resonance detection, are accomplished. Simulation results showed that the BSR system can effectively improve the signal to noise ratio of the output signal. Especially, the multistage stochastic resonance system has obvious advantages in the detection of weak signals submerged by strong noise.

Key concepts: Stochastic resonance, Bistability, SIGNAL (programming language), Noise (video), Detection theory, Signal transfer function, Computer science, Resonance (particle physics)

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