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Local Near-Optimal Control for Interconnected Systems with Time-Varying Delays

机译:具有时变延迟的互联系统的本地近最优控制

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In this paper, we develop a novel local near-optimal control (LNOC) for continuous-time (CT) time-varying delayed interconnected systems by observer-critic structure based on adaptive dynamic programming. A boundary function which is approximated by local state observer is presented to substitute the unknown interconnection. Through constructing a novel local value function, the LNOC is obtained by solving the local Hamilton-Jacobi-Bellman equation with the implementation of local critic neural network. By using the Lyapunov's direct method, the proposed LNOC ensures the closed-loop CT time-varying delayed interconnected systems to be asymptotically stable. The effectiveness of the proposed LNOC scheme is illustrated using numerical simulation.
机译:在本文中,我们通过基于自适应动态规划的观察者 - 批评结构,开发一种新的局部近最优控制(LNOC),用于连续时间(CT)时变延迟互联互连系统。提出了由局部状态观察者近似的边界函数以替换未知互连。通过构建新颖的局部价值函数,通过解决当地汉尔顿 - 雅各比 - 贝尔曼方程与当地批评神经网络的实施来获得LNOC。通过使用Lyapunov的直接方法,所提出的LNOC确保闭环CT时变延迟互连系统渐近稳定。使用数值模拟说明所提出的LNOC方案的有效性。

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