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Adaptive Dynamic Programming for Optimal Tracking Control of Unknown Nonlinear Systems With Application to Coal Gasification

机译:未知非线性系统最优跟踪控制的自适应动态规划及其在煤气化中的应用

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摘要

In this paper, we establish a new data-based iterative optimal learning control scheme for discrete-time nonlinear systems using iterative adaptive dynamic programming (ADP) approach and apply the developed control scheme to solve a coal gasification optimal tracking control problem. According to the system data, neural networks (NNs) are used to construct the dynamics of coal gasification process, coal quality and reference control, respectively, where the mathematical model of the system is unnecessary. The approximation errors from neural network construction of the disturbance and the controls are both considered. Via system transformation, the optimal tracking control problem with approximation errors and disturbances is effectively transformed into a two-person zero-sum optimal control problem. A new iterative ADP algorithm is then developed to obtain the optimal control laws for the transformed system. Convergence property is developed to guarantee that the performance index function converges to a finite neighborhood of the optimal performance index function, and the convergence criterion is also obtained. Finally, numerical results are given to illustrate the performance of the present method.
机译:在本文中,我们使用迭代自适应动态规划(ADP)方法为离散时间非线性系统建立了新的基于数据的迭代最优学习控制方案,并将所开发的控制方案应用于解决煤气化最优跟踪控制问题。根据系统数据,分别使用神经网络(NNs)来构建煤气化过程,煤质和参考控制的动力学,而无需系统的数学模型。同时考虑了扰动和控制的神经网络构造的近似误差。通过系统变换,将具有逼近误差和干扰的最优跟踪控制问题有效地转化为两人零和最优控制问题。然后,开发了新的迭代ADP算法,以获取转换后系统的最佳控制律。开发收敛性以保证性能指标函数收敛到最优性能指标函数的有限邻域,并获得收敛准则。最后,给出了数值结果,说明了该方法的有效性。

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