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Adaptive Dynamic Programming for Decentralized Stabilization of Uncertain Nonlinear Large-Scale Systems With Mismatched Interconnections

机译:具有错配互连的不确定非线性大规模系统分散稳定的自适应动态规划

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摘要

This paper presents a novel decentralized control strategy for a class of uncertain nonlinear large-scale systems with mismatched interconnections. First, it is shown that the decentralized controller for the overall system can be represented by an array of optimal control policies of auxiliary subsystems. Then, within the framework of adaptive dynamic programming, a simultaneous policy iteration (SPI) algorithm is developed to solve the Hamilton-Jacobi-Bellman equations associated with auxiliary subsystem optimal control policies. The convergence of the SPI algorithm is guaranteed by an equivalence relationship. To implement the present SPI algorithm, actor and critic neural networks are applied to approximate the optimal control policies and the optimal value functions, respectively. Meanwhile, both the least squares method and the Monte Carlo integration technique are employed to derive the unknown weight parameters. Furthermore, by using Lyapunov's direct method, the overall system with the obtained decentralized controller is proved to be asymptotically stable. Finally, the effectiveness of the proposed decentralized control scheme is illustrated via simulations for nonlinear plants and unstable power systems.
机译:本文介绍了一类具有不匹配互连的一类不确定非线性大型系统的分散控制策略。首先,示出了用于整体系统的分散控制器可以由辅助子系统的最佳控制策略阵列表示。然后,在自适应动态编程的框架内,开发了一种同时策略迭代(SPI)算法以解决与辅助子系统最佳控制策略相关的Hamilton-Jacobi-Bellman方程。 SPI算法的融合由等价关系保证。为了实现目前的SPI算法,应用演员和批评者神经网络分别应用于近似最佳控制策略和最佳价值函数。同时,采用最小二乘法和蒙特卡罗集成技术来得出未知的权重参数。此外,通过使用Lyapunov的直接方法,证明具有所获得的分散控制器的整体系统被证明是渐近稳定的。最后,通过用于非线性设备和不稳定电力系统的模拟来说明所提出的分散控制方案的有效性。

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