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Finite-time Control of Discrete-time Systems With Variable Quantization Density in Networked Channels

机译:网络信道中具有可变量化密度的离散时间系统的有限时间控制

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This paper is concerned with the problem of finitetime control for a class of discrete-time networked systems.The measurement output and control input signals are quantized before being transmitted in communication network.The quantization density of the network is assumed to be variable depending on the throughputs of network for the sake of congestion avoidance.The variation of the quantization density modes satisfies persistent dwell-time(PDT)switching which is more general than dwell-time switching in networked channels.By using a quantization-error-dependent Lyapunov function approach,sufficient conditions are given to ensure that the quantized systems are finite-time stable and finite-time bounded with a prescribed H∞performance,upon which a set of controllers depending on the mode of quantization density are designed.In order to show the effectiveness of the designed H_∞controller,we apply the developed theoretical results to a numerical example.
机译:本文涉及针对一类离散时间联网系统的提金时控制问题。测量输出和控制输入信号在通信网络中传输之前量化。假设网络的量化密度取决于可变的用于避免拥塞的网络吞吐量。量化密度模式的变化满足持久的停留时间(PDT)切换,比网络通道中的停留时间更广泛。使用量化误差的Lyapunov函数方法,提供足够的条件以确保量化系统是用规定的H∞performance有限的稳定和有限时间,根据量化密度的一组控制器设计。在顺序以显示有效性在设计的H_∞Controller中,我们将开发的理论结果应用于数值示例。

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