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Adaptive control of chaotic dynamical systems using invariant manifold approach

机译:不变流形方法的混沌动力学系统自适应控制

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In this brief, an adaptive chaos control method is developed for stabilizing chaotic systems at their unknown equilibrium(s) using the invariant manifold theory. The developed method overcomes the problem that the equilibrium(s) of the chaotic systems are dependent on the unknown system parameters, which makes direct application of the conventional adaptive control difficult. Further development of the adaptive chaos control is undertaken for the situation where the parameter estimates are only allowed to vary within a bounded set due to the sensitivity of chaotic systems to parameter variations. A sufficient condition for convergence of system states and parameter estimates is obtained. The design method developed then is applied to stabilizing the Lorenz chaotic system at an unknown equilibrium. Both mathematical and computational results have demonstrated the effectiveness of this method.
机译:在此简介中,使用不变流形理论,开发了一种自适应混沌控制方法,用于将混沌系统稳定在未知平衡下。所开发的方法克服了混沌系统的平衡取决于未知系统参数的问题,这使得直接应用常规自适应控制变得困难。对于由于混沌系统对参数变化的敏感性而仅允许参数估计在有界集合内变化的情况下,进行了自适应混沌控制的进一步发展。获得了收敛系统状态和参数估计的充分条件。然后将开发的设计方法应用于在未知平衡下稳定Lorenz混沌系统。数学和计算结果均证明了该方法的有效性。

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