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Approximate Optimal Control for a Class of Singularly Perturbed Nonlinear Time-delay Systems

机译:一类奇异扰动非线性时滞系统的近似最优控制

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The quadratic optimal control problem for a class of singularly perturbed nonlinear time-delay systems is investigated. Based on successive approximation approach (SAA), the reduced order nonlinear time-delay optimal control law is achieved by solving a decoupled sequence of inhomogeneous linear two-point boundary value (TPBV) problems without time-delay and time-advance terms. The obtained composite control law of the original problem consists of accurate state feedback terms and a nonlinear time-delay compensation term, which is the limit of the adjoint vector sequence. The proposed algorithms not only solve optimal control problems in the singularly perturbed nonlinear time-delay system but also reduce the computation time. Simulation examples are included to illustrate the procedures.
机译:研究了一类奇异扰动非线性时滞系统的二次最佳控制问题。基于连续的近似方法(SAA),通过求解在没有时延迟和时间推迟条款的情况下求解不均匀线性两点边界值(TPBV)问题的解耦序列来实现降低的非线性时延最佳控制定律。所获得的原始问题的复合控制定律由准确的状态反馈术语和非线性时间延迟补偿项组成,这是伴随矢量序列的极限。所提出的算法不仅解决了奇异扰动的非线性时滞系统中的最佳控制问题,还可以减少计算时间。包括模拟示例以说明程序。

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