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Stability Analysis of Networked Control Systems Using a Switched Linear Systems Approach

机译:使用切换线性系统方法的网络控制系统的稳定性分析

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In this paper, we study the stability of Networked Control Systems (NCSs) that are subject to time-varying transmission intervals and communication constraints in the sense that, per transmission, only one node can access the network and send its information. The order in which nodes send their information is dictated by a network protocol, such as the well-known Round Robin (RR) or Try-Once-Discard (TOD) protocol. Focussing on linear plants and linear continuous-time or discrete-time controllers, we model the NCS with time-varying transmission intervals as a discrete-time switched linear uncertain system. We obtain bounds for the allowable range of transmission intervals in terms of both minimal and maximal allowable transmission intervals. Hereto, a new convex overapproximation of the uncertain switched system is proposed, using a polytopic system with norm-bounded uncertainty, and new stability results for this class of hybrid systems are developed. On the benchmark example of a batch reactor, we explicitly exploit the linearity of the system, leading to a significant reduction in conservatism with respect to the existing approaches.
机译:在本文中,我们研究网络控制系统(NCS)的稳定性,该系统受时变传输间隔和通信约束的影响,即每次传输只有一个节点可以访问网络并发送其信息。节点发送信息的顺序由网络协议(例如众所周知的Round Robin(RR)或Try-Once-Discard(TOD)协议)决定。着眼于线性工厂和线性连续时间或离散时间控制器,我们将具有时变传输间隔的NCS建模为离散时间切换线性不确定系统。我们根据最小和最大允许传输间隔来获得传输间隔允许范围的界限。至此,提出了一种不确定的切换系统的凸凸超逼近,它使用具有范数界不确定性的多边形系统,并为此类混合系统开发了新的稳定性结果。在间歇反应器的基准示例中,我们明确利用了系统的线性,从而相对于现有方法大大降低了保守性。

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