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Optimal Control Of Chaotic Systems With Input Saturation Using An Input-state Linearization Scheme

机译:输入状态线性化方案的具有输入饱和的混沌系统的最优控制

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Chaos is undesirable in many engineering applications since it causes a serious degradation of the system performance and restricts the system's operating range. Therefore, the problem of controlling chaos has attracted intense interest in recent years. This paper proposes an approach for optimizing the control of chaotic systems with input saturation using an input-state linearization scheme. In the proposed approach, the optimal system gains are identified using the Nelder-Mead simplex algorithm. This algorithm does not require the derivatives of the cost function (or the performance index) to be optimized, and is therefore particularly applicable to problems with undifferentiable elements or discontinuities. Two numerical simulations are performed to demonstrate the feasibility and effectiveness of the proposed method.
机译:在许多工程应用中,混沌是不可取的,因为它会导致系统性能严重下降并限制系统的工作范围。因此,近年来,控制混乱的问题引起了广泛的关注。本文提出了一种使用输入状态线性化方案优化具有输入饱和度的混沌系统控制的方法。在提出的方法中,使用Nelder-Mead单纯形算法确定最佳系统增益。该算法不需要优化成本函数(或性能指标)的导数,因此特别适用于元素不可区分或不连续的问题。进行了两个数值模拟,以证明该方法的可行性和有效性。

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