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首页> 外文期刊>Automatica Sinica, IEEE/CAA Journal of >Neural-Network-Based Control for Discrete-Time Nonlinear Systems with Input Saturation Under Stochastic Communication Protocol
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Neural-Network-Based Control for Discrete-Time Nonlinear Systems with Input Saturation Under Stochastic Communication Protocol

机译:随机通信协议下输入饱和度的离散时间非线性系统基于神经网络的控制

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摘要

In this paper, an adaptive dynamic programming (ADP) strategy is investigated for discrete-time nonlinear systems with unknown nonlinear dynamics subject to input saturation. To save the communication resources between the controller and the actuators, stochastic communication protocols (SCPs) are adopted to schedule the control signal, and therefore the closed-loop system is essentially a protocol-induced switching system. A neural network (NN)-based identifier with a robust term is exploited for approximating the unknown nonlinear system, and a set of switch-based updating rules with an additional tunable parameter of NN weights are developed with the help of the gradient descent. By virtue of a novel Lyapunov function, a sufficient condition is proposed to achieve the stability of both system identification errors and the update dynamics of NN weights. Then, a value iterative ADP algorithm in an offline way is proposed to solve the optimal control of protocol-induced switching systems with saturation constraints, and the convergence is profoundly discussed in light of mathematical induction. Furthermore, an actor-critic NN scheme is developed to approximate the control law and the proposed performance index function in the framework of ADP, and the stability of the closed-loop system is analyzed in view of the Lyapunov theory. Finally, the numerical simulation results are presented to demonstrate the effectiveness of the proposed control scheme.
机译:本文研究了具有未知非线性动力学的离散时间非线性系统,对输入饱和度的离散时间非线性系统进行了研究。为了保存控制器和执行器之间的通信资源,采用随机通信协议(SCPS)来调度控制信号,因此闭环系统基本上是协议引起的开关系统。基于具有稳健术语的基于神经网络(NN)的标识符,用于近似于未知的非线性系统,并且在梯度下降的帮助下开发了具有其他可调参数的基于交换机的更新规则。凭借新颖的Lyapunov函数,提出了足够的条件来实现系统识别误差和NN权重的更新动态的稳定性。然后,提出了一种以离线方式的值迭代ADP算法,以解决具有饱和约束的协议引起的交换系统的最佳控制,并且根据数学诱导,收敛是深切讨论的。此外,开发了演员 - 评论家NN方案以近似于ADP框架中的控制法和所提出的性能指标功能,鉴于Lyapunov理论,分析了闭环系统的稳定性。最后,提出了数值模拟结果以证明所提出的控制方案的有效性。

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