Title :
Stochastic resonance in a bistable system driven by non-gaussian noise and gaussian noise
Author :
Meng Yunliang ; Pei Changxing
Author_Institution :
State Key Lab. of Integrated Service Networks, Xidian Univ., Xi´an, China
Abstract :
The stochastic resonance in a bistable system driven by multiplicative non-Gaussian noise and additive Gaussian white noise is studied by using the theory of signal-to-noise ratio. The non-Markovian process is reduced to a Markovian process through a path integral approach and an approximate Fokker-Planck equation is obtained by applying the unified colored noise approximation. The expression of the signal-to-noise ratio is obtained by using the adiabatic limit. The effects of the non-Gaussian parameter p on the stochastic resonance are discussed. It is found that the non-Gaussian noise enhances the stochastic resonance in the case of p>1 and it restrains the stochastic resonance in the case of p<;1. The optimal value of resonance noise intensity D decreases with p increasing when the correlative strength λ <; 0, however, it increases with p increasing when λ ≥ 0.
Keywords :
AWGN; Markov processes; approximation theory; stochastic systems; additive Gaussian white noise; approximate Fokker-Planck equation; bistable system; nonGaussian noise; nonMarkovian process; path integral approach; signal-to-noise ratio; stochastic resonance; unified colored noise approximation; Noise; bistable system; non-Gaussian noise; signal-to-noise ratio; stochastic resonance;
Conference_Titel :
Electronics, Computer and Applications, 2014 IEEE Workshop on
Conference_Location :
Ottawa, ON
DOI :
10.1109/IWECA.2014.6845631