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Periodic and random perturbation of catalytic oxidation of CO

Periodic and random perturbation of catalytic oxidation of CO
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摘要 When a controllable input is modulated by noise and signal, the response of a nonlinear system may exhibit a synchronized effect, which is referred to as stochastic resonance(SR). With the help of noise, the detection of weak signal may become possible and its signal-to-noise ratio can be increased. A model to describe catalytic oxidation of CO on single crystal was adopted, and its stability was studied by linear analysis method. Through computer simulation, the responses under periodic and random perturbation were analyzed. Stochastic resonance behavior was found in a narrow bistable region, or near the oscillatory region. The results shows more characteristics than those of 1-dimensional system does. When a controllable input is modulated by noise and signal, the response of a nonlinear system may exhibit a synchronized effect, which is referred to as stochastic resonance(SR). With the help of noise, the detection of weak signal may become possible and its signal-to-noise ratio can be increased. A model to describe catalytic oxidation of CO on single crystal was adopted, and its stability was studied by linear analysis method. Through computer simulation, the responses under periodic and random perturbation were analyzed. Stochastic resonance behavior was found in a narrow bistable region, or near the oscillatory region. The results shows more characteristics than those of 1-dimensional system does.
出处 《Science China Chemistry》 SCIE EI CAS 1999年第3期332-336,共5页 中国科学(化学英文版)
基金 Project supported by the National Natural Science Foundation of China (Grant No. 29673039)
关键词 STOCHASTIC RESONANCE CATALYTIC OXIDATION of CO nonlinear dynamics bifurcation. stochastic resonance catalytic oxidation of CO nonlinear dynamics bifurcation
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