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Optimal filtering and control for wireless networked closed-loop control systems

机译:无线网络闭环控制系统的最佳滤波和控制

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This article studies the optimal filtering and control for wireless networked control systems (WNCSs). In WNCSs, packets may be lost in both control and feedback channels and user datagram protocol is usually used to improve the performance of the real-time control. Relevant literature indicates that the conventional optimal filtering for such a system cannot be applied in practice due to the complex calculation with Gaussian mixtures. This paper proposes a novel scheme to realize the optimal filtering and the linear quadratic Gaussian control for WNCSs, in which the controlled node performs a local estimation and the remote-control node performs the final estimation and control, and a synchronization of two estimators is guaranteed by a communication mechanism. An optimal filtering algorithm is developed, the stability condition of the filtering error covariance is obtained, optimal finite-horizon and infinite-horizon control are derived, and the stability of the closed-loop control system is proved. Numerical simulations show the validity and feasibility of the theoretical results.
机译:本文研究了无线网络控制系统(WNCSS)的最佳滤波和控制。在WNCSS中,数据包可能丢失在控制和反馈通道中,并且通常用于改善实时控制的性能。相关文献表明,由于具有高斯混合物的复杂计算,在实践中不能应用这种系统的传统最佳滤波。本文提出了一种新颖的方案来实现WNCS的最佳滤波和线性二次高斯控制,其中受控节点执行本地估计,并且遥控节点执行最终估计和控制,并且保证了两个估计器的同步通过通信机制。开发了一种最佳滤波算法,获得了滤波误差协方差的稳定性条件,导出了最佳的有限范围和无限地平线控制,并证明了闭环控制系统的稳定性。数值模拟显示了理论结果的有效性和可行性。

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