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A Control Scheme Based on Online Delay Evaluation for a Class of Networked Control Systems

机译:一类网络控制系统基于在线时延评估的控制方案

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摘要

A control scheme that integrates control technology with communication technology to solve the delay problem is introduced for a class of networked control systems: Networked Half-Link Systems (NHLS). Concretely, we use the master-slave clock synchronization technology to evaluate the delays online, and then the LQ optimal control based on delays is adopted to stabilize the controlled plant. During the clock synchronization process, the error of evaluated delays is inevitably induced from the clock synchronization error, which will deteriorate the system performances, and e-ven make system unstable in certain cases. Hence, the discussions about the clock error, and the related control analysis and design are also developed. Specifically, we present the sufficient conditions of controller parameters that guarantee the system stability, and a controller design method based on the error of delays is addressed thereafter. The experiments based on a CANbus platform are fulfilled, and the experimental results verify the previous analytic results finally.
机译:针对一类网络控制系统:网络半链接系统(NHLS),介绍了一种将控制技术与通信技术相集成以解决延迟问题的控制方案。具体来说,我们使用主从时钟同步技术在线评估时延,然后采用基于时延的LQ最优控制来稳定受控工厂。在时钟同步过程中,时钟同步误差不可避免地会引起评估延迟的误差,这将使系统性能下降,甚至在某些情况下会使系统不稳定。因此,还展开了有关时钟误差的讨论,以及相关的控制分析和设计。具体来说,我们提出了保证系统稳定性的控制器参数的充分条件,然后提出了基于时延误差的控制器设计方法。完成了基于CANbus平台的实验,实验结果最终验证了先前的分析结果。

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