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& IT;H-infinity & IT; control for time-delay systems with randomly occurring nonlinearities subject to sensor saturations, missing measurements and channel fadings

机译:它; H-Infinity⁢ 控制具有随机发生的非线性的时延系统,受传感器饱和度,缺少测量和沟道衰落

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The H-infinity control problem for a class of time-delay systems with randomly occurring nonlinearities (RONs) is addressed in this paper. Sensor saturations, missing measurements and channel fadings are governed by random variables obeying the Bernoulli distributions. The measurement output is subject to both data missing and randomly occurring sensor saturations (ROSSs) described by sector-nonlinearities as well as the channel fadings caused typically in wireless communication. The aim of the addressed problem is to design a full-order dynamic output-feedback controller such that the closed-loop system is exponentially meansquare stable and satisfies the prescribed H-infinity performance constraint. Sufficient conditions are presented by resorting to intensive stochastic analysis and matrix inequality techniques, which not only guarantee the existence of the desired controller for all possible time-delays, RONs, missing measurements and ROSSs but also lead to the explicit expressions of such controllers. Finally, a numerical example is given to demonstrate the applicability of the proposed control scheme. (C) 2018 ISA. Published by Elsevier Ltd. All rights reserved.
机译:本文解决了随机发生非线性(鲁尔斯)的一类时间延迟系统的H-Infinity控制问题。传感器饱和度,缺失的测量和频道衰落受遵循伯努利分布的随机变量的管辖。测量输出受到扇区 - 非线性(扇形非线性(通常在无线通信中引起的频道衰落)所描述的数据丢失和随机发生的传感器饱和度(罗斯)。解决问题的目的是设计一个全阶动态输出反馈控制器,使得闭环系统是指数级的稳定性,满足规定的H-Infinity性能约束。通过借助强化随机分析和矩阵不等式技术来提供充分的条件,这不仅保证了所需控制器的存在,以满足所有可能的时间延迟,鲁,缺少测量和罗斯,而且还导致了这种控制器的明确表达。最后,给出了一个数值例子来证明所提出的控制方案的适用性。 (c)2018 ISA。 elsevier有限公司出版。保留所有权利。

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