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首页> 外文期刊>IEEE Transactions on Fuzzy Systems >Efficient Model-Predictive Control for Networked Interval Type-2 T–S Fuzzy System With Stochastic Communication Protocol
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Efficient Model-Predictive Control for Networked Interval Type-2 T–S Fuzzy System With Stochastic Communication Protocol

机译:具有随机通信协议的网络间隔类型-2 T-S模糊系统的高效模型预测控制

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摘要

In this article, the efficient model-predictive control (EMPC) problem of a class of nonlinear systems in the framework of interval type-2 Takagi-Sugeno (IT2 T-S) fuzzy is investigated. In order to improve the reliability of the data transmission while reducing the network communication burden, a so-called stochastic communication protocol (SCP) governed by a Markov chain is adopted to orchestrate the data transmission order from the controller to the actuator. The purpose of the addressed problem is to design a set of desired EMPC controllers so as to guarantee the mean-square system stability and obtain a good balance among the computation burden, initial feasible region, and the control performance. A novel control model is established for the SCP and IT2 T-S fuzzy nonlinearities in a unified representation by using a fuzzy periodic switching related to the transmission token and the membership function. Then, the system state, the SCP-based control perturbation, and the previous input under the SCP are fully taken into consideration for constructing the objective function. By virtue of the "min-max" strategy, a few optimizations are formulated, and the corresponding EMPC algorithm is provided, where the feedback gain is designed offline, while the control perturbation is obtained online. Furthermore, by means of the matrix partition technique, sufficient conditions are presented to rigidly guarantee the feasibility of the proposed EMPC algorithm and the mean-square stability of the underlying IT2 T-S fuzzy system. Finally, two illustrative examples are utilized to demonstrate the validity of the proposed EMPC strategy.
机译:在本文中,研究了间隔型-2 Takagi-Sugeno(IT2 T-S)模糊框架中一类非线性系统的有效模型预测控制(EMPC)问题。为了提高数据传输的可靠性,同时降低了网络通信负担,采用由马尔可夫链控制的所谓的随机通信协议(SCP)来从控制器向致动器编排数据传输顺序。解决问题的目的是设计一组所需的EMPC控制器,以便保证平均方形系统稳定性,并在计算负担,初始可行区域和控制性能之间获得良好的平衡。通过使用与传输令牌和隶属函数相关的模糊周期性切换,在统一表示中为SCP和IT2 T-S模糊非线性建立了一种新颖的控制模型。然后,对构建目标函数充分考虑系统状态,基于SCP的控制扰动和SCP下的先前输入。借助于“MIN-MAX”策略,配制了一些优化,提供了相应的EMPC算法,其中反馈增益是脱机的,而控制扰动在线获得。此外,通过矩阵分区技术,提出了足够的条件以严格保证所提出的EMPC算法的可行性以及底层IT2 T-S模糊系统的平均方形稳定性。最后,利用了两个说明性实施例来证明所提出的EMPC策略的有效性。

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