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Optimal control laws for time-delay systems with saturating actuators based on heuristic dynamic programming

机译:基于启发式动态规划的饱和执行器时滞系统的最优控制律

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摘要

In this paper a new iterative heuristic dynamic programming (HDP) algorithm is proposed to solve the optimal control problem for a class of nonlinear discrete time-delay systems with saturating actuators. Considering the saturation nonlinearity in the actuators, a nonquadratic performance index function is introduced. In the meantime, a state modification is used to deal with the obstacle induced by time delays. In the new iterative HDP algorithm the local and global optimization searching processes are developed to solve the optimal feedback control problem with convergence analysis. In the presented iterative HDP algorithm, two neural networks are used to facilitate the implementation of the iterative algorithm. Finally, two simulation examples are given to demonstrate the convergence and feasibility of the proposed optimal control scheme.
机译:为了解决一类带有饱和执行器的非线性离散时滞系统的最优控制问题,本文提出了一种新的迭代启发式动态规划算法。考虑到执行器中的饱和非线性,引入了非二次性能指标函数。同时,使用状态修改来处理由时间延迟引起的障碍。在新的迭代HDP算法中,开发了局部和全局优化搜索过程,以通过收敛性分析解决最优反馈控制问题。在提出的迭代HDP算法中,使用了两个神经网络来促进迭代算法的实现。最后,给出了两个仿真例子来说明所提出的最优控制方案的收敛性和可行性。

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