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A direct approach for the solution of nonlinear optimal control problems with multiple delays subject to mixed state-control constraints

机译:混合状态控制约束下多时滞非线性最优控制问题的直接求解

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This paper deals with the numerical investigation of nonlinear optimal control problems with multiple delays in which the state trajectory and control input are subject to mixed state-control constraints. A direct approach based on a hybrid of block-pulse functions and Lagrange interpolation is proposed. The constrained optimal control problem is first reformulated as an unconstrained optimization one using a penalty function technique. The resulting optimization problem is then solved by means of the Lagrange multipliers procedure. The proposed framework is an extension and also a modification of the conventional Lagrange interpolation. Combining block-pulse functions and Lagrange interpolation allows one to simultaneously make use the advantages of the two mentioned bases. The operational matrices of delay and derivative associated with the hybrid functions are presented. An upper error bound for the proposed hybrid functions with respect to the maximum norm is obtained. Simulation studies are provided to verify the validity and reliability of the developed procedure.
机译:本文研究了具有多个时滞的非线性最优控制问题的数值研究,其中状态轨迹和控制输入受到混合状态控制约束的影响。提出了一种基于块脉冲函数和拉格朗日插值混合的直接方法。首先使用罚函数技术将约束的最优控制问题重构为无约束的最优控制问题。然后,通过拉格朗日乘数法解决最终的优化问题。所提出的框架是对传统拉格朗日插值的扩展和修改。结合块脉冲功能和Lagrange插值,可以同时利用上述两个基准的优势。提出了与混合函数相关的时延和导数的运算矩阵。获得针对所提出的混合函数的关于最大范数的上限误差。提供仿真研究以验证所开发程序的有效性和可靠性。

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