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非高斯噪声驱动下非对称双稳系统的平均首次穿越时间与随机共振研究
引用本文:张静静,靳艳飞.非高斯噪声驱动下非对称双稳系统的平均首次穿越时间与随机共振研究[J].物理学报,2011,60(12):120501-120501.
作者姓名:张静静  靳艳飞
作者单位:北京理工大学力学系,北京 100081
基金项目:国家自然科学基金(批准号:10972032)、北京理工大学优秀青年教师计划(批准号:2010YS0101)和北京理工大学科技创新计划重大项目资助的课题.
摘    要:研究了乘性非高斯噪声和加性高斯白噪声共同激励下非对称双稳系统的平均首次穿越时间和随机共振问题. 利用路径积分法和两态模型理论,推导出平均首次穿越时间和信噪比的表达式. 研究结果表明:势阱非对称性对两个不同方向的平均首次穿越时间的影响是不同的. 信噪比是加性噪声强度和势阱非对称性的非单调函数,系统出现了随机共振现象;信噪比是乘性噪声强度的单调函数,没有共振峰出现. 这说明该系统中乘性噪声强度和加性噪声强度对信噪比的影响是不同的. 关键词: 非高斯噪声 非对称双稳系统 平均首次穿越时间 随机共振

关 键 词:非高斯噪声  非对称双稳系统  平均首次穿越时间  随机共振
收稿时间:2010-04-28
修稿时间:7/4/2011 12:00:00 AM

Mean first-passage time and stochastic resonance in an asymmetric bistable system driven by non-Gaussian noise
Zhang Jing-Jing and Jin Yan-Fei.Mean first-passage time and stochastic resonance in an asymmetric bistable system driven by non-Gaussian noise[J].Acta Physica Sinica,2011,60(12):120501-120501.
Authors:Zhang Jing-Jing and Jin Yan-Fei
Institution:Department of Mechanics, Beijing Institute of Technology, Beijing 100081, China;Department of Mechanics, Beijing Institute of Technology, Beijing 100081, China
Abstract:In this paper, mean first-passage time (MFPT) and stochastic resonance (SR) are investigated in an asymmetric bistable system driven by multiplicative non-Gaussian noise and additive Gaussian white noise. Using the path integral approach and two-state theory, the expression of MFPT and the signal-to-noise ratio (SNR) are derived. The results show that the influences of the asymmetric coefficient on the MFPTs in two opposite directions are entirely different. SNR is a non-monotonic function of the additive noise intensity and asymmetric coefficient, therefore, an SR is found in this system. Whereas SNR is a monotonic function of the multiplicative noise intensity and no SR appears. This demonstrates that the effect of the multiplicative noise intensity on SNR is different from that of the additive noise intensity in the system.
Keywords:non-Gaussian noise  asymmetric bistable system  mean first-passage time  stochastic resonance
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