随机共振
噪音(视频)
订单(交换)
声学
共振(粒子物理)
统计物理学
物理
计算机科学
原子物理学
经济
人工智能
财务
图像(数学)
作者
В. С. Анищенко,Alexander Neiman,Frank Moss,Lutz Shimansky-Geier
出处
期刊:Physics-Uspekhi
[Institute of Physics]
日期:1999-01-31
卷期号:42 (1): 7-36
被引量:389
标识
DOI:10.1070/pu1999v042n01abeh000444
摘要
Stochastic resonance (SR) provides a glaring example of a noise-induced transition in a nonlinear system driven by an information signal and noise simultaneously. In the regime of SR some characteristics of the information signal (amplification factor, signal-to-noise ratio, the degrees of coherence and of order, etc.) at the output of the system are significantly improved at a certain optimal noise level. SR is realized only in nonlinear systems for which a noise-intensity-controlled characteristic time becomes available. In the present review the physical mechanism and methods of theoretical description of SR are briefly discussed. SR features determined by the structure of the information signal, noise statistics and properties of particular systems with SR are studied. A nontrivial phenomenon of stochastic synchronization defined as locking of the instantaneous phase and switching frequency of a bistable system by external periodic force is analyzed in detail. Stochastic synchronization is explored in single and coupled bistable oscillators, including ensembles. The effects of SR and stochastic synchronization of ensembles of stochastic resonators are studied both with and without coupling between the elements. SR is considered in dynamical and nondynamical (threshold) systems. The SR effect is analyzed from the viewpoint of information and entropy characteristics of the signal, which determine the degree of order or self-organization in the system. Applications of the SR concept to explaining the results of a series of biological experiments are discussed.
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