利用阴影集的一般2型模糊逻辑系统:一种容错控制的新范式

H. Patel, V. Shah
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引用次数: 6

摘要

模糊推理系统(FIS)现在被广泛应用于调节各种安全关键工程系统。这样做的主要原因是FIS可以使用人类的专业知识来创建。此外,随着2型模糊逻辑的引入,处理不确定性的能力为容错控制方法中的容错能力提供了诱人的改进,事实上,最近的研究表明,使用区间2型模糊推理系统(IT2 FIS)比1型模糊推理系统(T1 FIS)提供了更好的结果。在被动容错控制(PFTC)方法中,基于阴影型2模糊推理系统(ST2 FIS)所显示的性能提升,本研究提出了一种基于阴影型2模糊推理系统(ST2 FIS)的容错能力显著特点的新策略。ST2模糊推理系统基于阴影模糊集的思想,是一般2型模糊推理系统(GT2 FIS)的近似。使用ST2 FIS而不是GT2 FIS的基本原理是GT2 FIS的计算成本太高。本文给出了FTC使用IT2 FIS和FTC使用ST2 FIS对耦合锥形罐液位控制(CCTLC)系统的仿真结果,其中主要执行器的有效性损失分别为30%和40%。此外,在故障恢复时间方面,本文比较了使用ST2 FIS的拟议FTC方法与使用IT2 FIS的FTC方法。
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General Type-2 Fuzzy Logic Systems Using Shadowed Sets: A New Paradigm Towards Fault-Tolerant Control
Fuzzy Inference Systems (FIS) are now widely employed to regulate a wide range of safety-critical engineering systems. The main reason for this is that FIS may be created using expert human knowledge. Furthermore, with the introduction of Type-2 Fuzzy Logic, the ability to handle uncertainty offers an alluring improvement for fault-tolerant abilities in fault-tolerant control methods, and, in fact, recent studies have shown that the use of Interval Type-2 Fuzzy Inference Systems (IT2 FIS) provides better results than Type-1 Fuzzy Inference Systems (T1 FIS).The current research intends to suggest a novel strategy employing Shadowed Type-2 Fuzzy Inference System (ST2 FIS) for significant features in fault-tolerant capability in the Passive Fault-Tolerant Control (PFTC) method based on the performance increase shown by IT2 FIS. The ST2 FIS is based on the ideas of Shadowed Fuzzy Sets and is an approximation of General Type-2 Fuzzy Inference Systems (GT2 FIS). The fundamental rationale for utilising ST2 FIS instead of GT2 FIS is that the computational cost of GT2 FIS is too high for this application. The simulation results for the FTC using IT2 FIS and FTC using ST2 FIS for Coupled Conical Tank Level Control (CCTLC) system with 30 % and 40% loss of effectiveness in the main actuator are presented in this study. In addition, the article compares the proposed FTC approach using ST2 FIS to FTC using IT2 FIS in terms of fault-recovery time.
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