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Parameter estimation and antisynchronization of multi-wing chaotic flows via adaptive control

机译:通过自适应控制的多翼混沌流的参数估计和反异步

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In this paper, we study the antisynchronization by adaptive controllers, of a generalized multi-wing butterfly attractor design template using the four-wing (n=1) structure as a case study. It was assumed that the parameters of the response system are not available for measurement while the two systems are identical. The direct coupling of the sawtooth wave functions of the identical systems with appropriate tuning of the gain coefficients of the adaptive nonlinear controllers resulted to the antisychronized trajectories of the drive and response systems in two-dimension space. Simulation results show that the chaotic regimes achieved antisychrony while the error and parameter error systems asymptotically stabilized in finite time in the sense of Lyapunov.
机译:在本文中,我们研究了自适应控制器的反异步,通过四翼(n = 1)结构作为案例研究,通过四翼(n = 1)结构来研究Adaptive Conture Director。假设响应系统的参数不可用于测量,而两个系统是相同的。具有适当调谐的相同系统的锯齿波函数的直接耦合,自适应非线性控制器的增益系数导致驱动器的抗动性轨迹和两个维度空间中的响应系统。仿真结果表明,混沌制度在Lyapunov意义上渐近的误差和参数误差系统渐近的误差和参数误差系统。

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