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Network-based H-infinity control for T-S fuzzy systems with an adaptive event-triggered communication scheme

机译:具有自适应事件触发通信方案的T-S模糊系统的基于网络的H无限控制

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摘要

This paper extends the prior work of discrete event-triggered communication for networked T-S fuzzy systems, where the next communication instant is determined by an event-triggered communication scheme with a constant threshold and the premises of T-S fuzzy systems and parallel distribution compensation (PDC) fuzzy control rules are synchronous. Firstly, an adaptive event-triggered communication scheme for NCSs is presented, which relaxes the assumption of the prior work that the threshold of event-triggered communication scheme is a preselected constant. Secondly, an asynchronous premise re-construct method for networked T-S fuzzy systems is proposed, which relaxes the assumption of the prior work that the premises of the plant and the PDC control rules are synchronous. We show that the number of transmitted packets generated by the proposed scheme is smaller than those generated by some existing ones while ensuring the desired control performance. Simulations show the effectiveness of the proposed method. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文扩展了网络TS模糊系统离散事件触发通信的先前工作,其中下一个通信时刻由具有恒定阈值的事件触发通信方案以及TS模糊系统和并行分布补偿(PDC)的前提确定。模糊控制规则是同步的。首先,提出了一种针对NCS的自适应事件触发通信方案,该方案放宽了对先前工作的假设,即事件触发通信方案的阈值为预选常数。其次,提出了一种用于网络化T-S模糊系统的异步前提重构方法,它放宽了工厂前提与PDC控制规则是同步的前提假设。我们表明,在确保所需的控制性能的同时,所提出的方案所产生的传输包的数量要小于现有的传输包的数量。仿真表明了该方法的有效性。 (C)2017 Elsevier B.V.保留所有权利。

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