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Global chaos synchronization and robust filtering in noisy context

机译:嘈杂环境中的全局混沌同步和鲁棒过滤

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In this paper, the problem of global chaos synchronization is addressed. Two propositions borrowed from results of the robust control theory are established to achieve global synchronization of piecewise-linear dynamical systems in an observer configuration. They are expressed in terms of linear matrix inequalities. One proposition enables the computation of the observer gain matrix which ensures global synchronization with a predetermined transient time called rate of convergence. The second one enables the computation of the observer gain matrix ensuring the minimization of the influence of disturbances in a noisy context leading to a so-called robust filtering. At the same time, propositions give conditions on the structure of the generator to obtain synchronization, Comparisons of performances are pointed out through a numerical example. They clearly highlight the efficiency of robust filtering
机译:在本文中,解决了全局混沌同步的问题。建立了从鲁棒控制理论的结果中借来的两个命题,以在观察者配置中实现分段线性动力系统的全局同步。它们用线性矩阵不等式表示。一个命题使得能够计算观测器增益矩阵,从而确保以预定的瞬态时间(称为收敛速率)实现全局同步。第二种方法可以计算观察者增益矩阵,从而确保在嘈杂的环境中将干扰的影响降至最低,从而实现所谓的鲁棒滤波。同时,命题为发电机的结构提供了条件以获得同步,通过数值例子指出了性能的比较。它们明确强调了强大的过滤效率

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