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Quantized Output Feedback Control of Networked Control Systems with Packet Dropout

机译:数据包丢失的网络控制系统量化输出反馈控制

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This paper considers the quantized dynamic output feedback control of networked control system(NCS) with random packet dropout in both sensor-to-controller and controller-to-actuator channels. The packet losses in the two links are modeled as two independent Markov chains and the NCS is modeled as a Markov jump system. The stochastic switching signal for the quantized output feedback controller is designed to be a function of the number of successive packet loss in both of the two channels. Quantization density varies with the networked load condition. Then a sufficient condition of the stochastic stability with a prescribed H performance level is established based on the Lyapunov-Krasovskii function approach. Furthermore, a quantized output feedback controller is obtained via the cone complement linearization method. Finally, simulation results are provided to verify the effectiveness of the proposed method.
机译:本文认为网络控制系统(NCS)的量化动态输出反馈控制,在传感器到控制器和控制器到致动器通道中随机数据包丢失。 两个链路中的数据包丢失被建模为两个独立的马尔可夫链,NCS被建模为Markov跳转系统。 用于量化输出反馈控制器的随机开关信号被设计为两个通道中的两种通道中的连续分组丢失次数的函数。 量化密度随网络负载条件而变化。 然后基于Lyapunov-Krasovskii函数方法建立具有规定的H性能水平的充分性随机稳定性的条件。 此外,通过锥形补体线性化方法获得量化输出反馈控制器。 最后,提供了仿真结果来验证所提出的方法的有效性。

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