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Global Synchronization of Stochastically Disturbed Memristive Neurodynamics via Discontinuous Control Laws
  • 分类:TP183[自动化与计算机技术—控制科学与工程;自动化与计算机技术—控制理论与控制工程] TP13[自动化与计算机技术—控制科学与工程;自动化与计算机技术—控制理论与控制工程]
  • 作者机构:IEEE, the College of Mathematics and Econometrics, Hunan University, the Department of Mechanical and Automation Engineering, The Chinese University of Hong Kong, the Department of Mechanical and Automation Engineering, Chinese University of Hong Kong, the Department of Computer Science, City University of Hong Kong
  • 相关基金:supported by the Research Grants Council of the Hong Kong Special Administrative Region,China(416811,416812);National Natural Science Foundation of China(61573003);part by the Scientific Research Fund of Hunan Provincial Education Department of China(15k026)
中文摘要:

This paper presents the theoretical results on the master-slave(or driving-response) synchronization of two memristive neural networks in the presence of additive noise. First,a control law with a linear time-delay feedback term and a discontinuous feedback term is introduced. By utilizing the stability theory of stochastic differential equations, sufficient conditions are derived for ascertaining global synchronization in mean square using this control law. Second, an adaptive control law consisting of a linear feedback term and a discontinuous feedback term is designed to achieve global synchronization in mean square, and it does not need prior information of network parameters or random disturbances. Finally, simulation results are presented to substantiate the theoretical results.

英文摘要:

This paper presents the theoretical results on the master-slave (or driving-response) synchronization of two memristive neural networks in the presence of additive noise. First, a control law with a linear time-delay feedback term and a discontinuous feedback term is introduced. By utilizing the stability theory of stochastic differential equations, sufficient conditions are derived for ascertaining global synchronization in mean square using this control law. Second, an adaptive control law consisting of a linear feedback term and a discontinuous feedback term is designed to achieve global synchronization in mean square, and it does not need prior information of network parameters or random disturbances. Finally, simulation results are presented to substantiate the theoretical results. ? 2014 Chinese Association of Automation.

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