区间2型T-S模糊系统自触发模型预测控制:一种协同设计方法

IF 3.2 3区 计算机科学 Q2 AUTOMATION & CONTROL SYSTEMS
Yuying Dong, Yan Song, Yuan Yuan, Jiliang Luo, Huanhuan Yuan
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引用次数: 0

摘要

研究了一类具有硬约束的区间2型Takagi-Sugeno (IT2 T-S)模糊形式非线性系统的模糊模型预测控制问题。为了节省传输能量和减少计算负担,在FMPC策略中加入了一种自触发方案,从而产生了所谓的自触发FMPC策略。根据自触发FMPC策略的特点,利用自触发瞬间而不是采样瞬间构造相应的二次函数和时变终端类约束集。然后,充分考虑系统的模糊特性和自触发时刻,以最大触发间隔和最小代价函数为目标,构造了一个无限时间范围内的“最小-最大”问题,通过该问题协同设计反馈增益和下一个触发时刻。此外,建立了相邻自触发时刻的二次函数之间的差值,这对寻找目标函数在无限时间范围内的某个上界有很大的帮助。此外,还研究了若干辅助优化问题的可解性,并给出了保证底层IT2 T-S模糊系统渐近稳定的充分条件。最后,通过两个仿真实例验证了所提出的自触发IT2 T-S FMPC策略的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Self-Triggered Model Predictive Control for Interval Type-2 T-S Fuzzy Systems: A Co-Design Approach

In this article, the fuzzy model predictive control (FMPC) problem is investigated for a class of non-linear systems in an interval type-2 Takagi–Sugeno (IT2 T-S) fuzzy form subject to hard constraints. To save transmission energy and reduce the calculation burden, a self-triggering scheme is incorporated into the FMPC strategy, which gives rise to the so-called self-triggered FMPC strategy. Based on the characteristics of the self-triggered FMPC strategy, the self-triggering instants rather than sampling instants are employed to construct the corresponding quadratic function and time-varying terminal constraint-like (TC-like) set. Then, to maximize triggering intervals and minimize the cost function, the fuzzy property and the self-triggering instants are fully considered to formulate a “min-max” problem over the infinite-time horizon, through which the feedback gain and next triggering instant are co-designed. Furthermore, the difference between the proposed quadratic functions of adjacent self-triggering instants is established, which contributes greatly to finding a certain upper bound of the objective function over the infinite-time horizon. Moreover, certain auxiliary optimization problems are developed for solvability and sufficient conditions are provided to ensure the asymptotic stability of the underlying IT2 T-S fuzzy system. Finally, two simulation examples are utilized to illustrate the validity of the proposed self-triggered IT2 T-S FMPC strategy.

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来源期刊
International Journal of Robust and Nonlinear Control
International Journal of Robust and Nonlinear Control 工程技术-工程:电子与电气
CiteScore
6.70
自引率
20.50%
发文量
505
审稿时长
2.7 months
期刊介绍: Papers that do not include an element of robust or nonlinear control and estimation theory will not be considered by the journal, and all papers will be expected to include significant novel content. The focus of the journal is on model based control design approaches rather than heuristic or rule based methods. Papers on neural networks will have to be of exceptional novelty to be considered for the journal.
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