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Study on the Application of Iterative Learning Control to Terminal Control of Linear Time-varying Systems

机译:迭代学习控制在线性时变系统终端控制中的应用研究

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摘要

An iterative learning control algorithm based on shifted Legendre orthogonal polynomials is proposed to address the terminal control problem of linear time-varying systems. First, the method parameterizes a linear time-varying system by using shifted Legendre polynomials approximation. Then, an approximated model for the linear time-varying system is deduced by employing the orthogonality relations and boundary values of shifted Legendre polynomials. Based on the model, the shifted Legendre polynomials coefficients of control function are iteratively adjusted by an optimal iterative, learning law derived. The algorithm presented can avoid solving the state transfer matrix of linear time-varying systems. Simulation results illustrate the effectiveness of the proposed method.
机译:针对线性时变系统的终端控制问题,提出了一种基于移位Legendre正交多项式的迭代学习控制算法。首先,该方法通过使用移位的勒让德多项式逼近来参数化线性时变系统。然后,利用移位的勒让德多项式的正交关系和边界值,推导了线性时变系统的近似模型。在此模型的基础上,通过推导的最佳迭代学习定律对调整后的勒让德多项式控制函数系数进行迭代调整。提出的算法可以避免求解线性时变系统的状态转移矩阵。仿真结果说明了该方法的有效性。

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