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Robust Stability Analysis and Systematic Design of Single-Input Interval Type-2 Fuzzy Logic Controllers

机译:单输入间隔2型模糊逻辑控制器的鲁棒稳定性分析和系统设计

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Recent results on fuzzy control have shown that interval type-2 (IT2) fuzzy logic controllers (FLCs) might achieve better control performance due to the additional degree of freedom provided by the footprint of uncertainty (FOU) in their IT2 fuzzy sets. However, the design and robust stability analysis of the IT2-FLCs are still challenging problems due to their relatively more complex internal structure. In this paper, we will derive the explicitly fuzzy mapping (FM) of a single-input IT2-FLC (SIT2-FLC) to present design methods and investigate its robustness. The analytical information of the IT2-FM will give the opportunity to provide explanations on the roles of the FOU parameters by taking advantage of the well-developed framework of nonlinear control theory. Comparative theoretical explorations will be presented on the differences between the type-1 (T1) FM and IT2-FM to clearly show the role of the FOU on the robust control system performance. It will be proven that the robust stability of the IT2 fuzzy system is guaranteed with the aids of the well-known Popov–Lyapunov method. Moreover, analytical design methods are presented for SIT2-FLCs to generate commonly employed control curves by only tuning the size of the FOUs without a need of an optimization procedure. It will be theoretically shown that the FOU gives the opportunity to the SIT2-FLC to generate commonly employed nonlinear control curves while also providing a certain degree of robustness which cannot be accomplished by its T1 counterpart. The presented results provide theoretical explanations on the role of the FOU on the performance and robustness of the SIT2-FLC.
机译:模糊控制的最新结果表明,区间2型(IT2)模糊逻辑控制器(FLC)可能会获得更好的控制性能,这是由于不确定度(FOU)在其IT2模糊集中所提供的额外自由度。但是,由于IT2-FLC的内部结构相对较复杂,因此其设计和强大的稳定性分析仍然是具有挑战性的问题。在本文中,我们将推导单输入IT2-FLC(SIT2-FLC)的显式模糊映射(FM),以提出设计方法并研究其鲁棒性。 IT2-FM的分析信息将提供机会,利用发达的非线性控制理论框架,对FOU参数的作用进行解释。将对类型1(T1)FM和IT2-FM之间的差异进行比较理论探索,以清楚地显示FOU在鲁棒控制系统性能上的作用。可以证明,借助著名的Popov–Lyapunov方法,可以保证IT2模糊系统的鲁棒稳定性。此外,提出了用于SIT2-FLC的分析设计方法,以通过仅调整FOU的大小而无需优化程序来生成常用控制曲线。从理论上可以看出,FOU为SIT2-FLC提供了生成常用非线性控制曲线的机会,同时还提供了一定程度的鲁棒性,这是T1同类产品无法实现的。提出的结果为FOU在SIT2-FLC的性能和鲁棒性方面的作用提供了理论解释。

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