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Adaptive generalized function lag projective synchronization and parameter identification of a class of chaotic systems with fully uncertain parameters and disturbance

机译:一类具有完全不确定参数和扰动的混沌系统的自适应广义函数滞后投影同步和参数辨识

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Generalized function projective lag synchronization(GFPLS) is characterized by the output of the drive system proportionally lagging behind the output of the response system and ratio of the two systems is desired function scaling matrix. In this paper, GFPLS between different chaotic systems with uncertain parameters, i.e. GFPLS between Chen and Lorenz chaotic system is studied by applying an adaptive control method. Based on Lyapunov stability theory, the adaptive controllers and corresponding parameter update rules are constructed to make the states of two diverse chaotic systems asymptotically synchronize up to the desired scaling matrix and to estimate the uncertain parameters. The numerical simulations are provided to show the effective and robustness of the results.
机译:广义函数投影滞后同步(GFPLS)的特征是驱动系统的输出成比例地滞后于响应系统的输出,并且两个系统之比是所需的函数缩放矩阵。本文采用自适应控制方法研究了参数不确定的不同混沌系统之间的GFPLS,即Chen和Lorenz混沌系统之间的GFPLS。基于Lyapunov稳定性理论,构建了自适应控制器和相应的参数更新规则,以使两个不同混沌系统的状态渐近同步至所需的比例矩阵,并估计不确定参数。提供数值模拟以显示结果的有效性和鲁棒性。

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