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A practical approach to networked control design for robust H-infinity performance in the presence of uncertainties in both communication and system

机译:在通信和系统的不确定性存在下,在存在不确定性的情况下实现网络控制设计的实用方法

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This work presents results on the development of robust H-infinity, control strategy for Networked Control Systems (NCSs) by involving uncertainties in both communication and controlled plant subsystems. The network-induced delays in both communication links (to and from the controller) are assumed to behave as Markov chains. An analytical approach is presented to calculate the transition probabilities of the Markovian network-induced de-lays. By employing the augmentation method, the resultant system is converted into a delay-free uncertain singular Markovian jump system with bounded transition probabili-ties. New conditions are established to assure that the uncertain NCS satisfies an H-infinity, per-formance requirement. Moreover, sufficient conditions for robust H-infinity, output feedback con-troller design are expressed in terms of LMIs. Finally, numerical examples are presented to verify the validity of the proposed controller design method. (c) 2020 Elsevier Inc. All rights reserved.
机译:这项工作通过涉及通信和受控植物子系统中的不确定性,提出了对网络控制系统(NCSS)的强大的H-Infinity,控制策略的发展。假设两个通信链路中的网络引起的延迟(往所述控制器)表现为马尔可夫链。提出了一种分析方法来计算马尔可维亚网络诱导的去层的过渡概率。通过采用增强方法,将得到的系统转换为具有有界过渡概率的无延时的不确定奇异马尔可夫跳跃系统。建立新条件以确保不确定的NCS满足H-Infinity,每个植入性需求。此外,对于鲁棒H-Infinity的充分条件,输出反馈Con-Troller设计以LMI表示。最后,提出了数值例子以验证所提出的控制器设计方法的有效性。 (c)2020 Elsevier Inc.保留所有权利。

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