Fuzzy-based metaheuristic algorithm for optimization of fuzzy controller: fault-tolerant control application

H. Patel
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引用次数: 13

Abstract

PurposeFuzzy-based metaheuristic algorithm is used to optimize the fuzzy controllers for the nonlinear level control system subject to uncertainty specially in the main actuator that has lost effectiveness (LOE). To optimize the fuzzy controller, type-1 harmonic search (HS) and interval type-2 (HS) will be used.Design/methodology/approachThe type-1 and type-2 fuzzy-based HS algorithms are designed for optimization of fuzzy controllers for Fault-Tolerant Control (FTC) applications, and this research proposes a fuzzy-based HS metaheuristic method. The performance of a fuzzy logic-based HS algorithm applied to a nonlinear two-tank level control process with a main actuator that has lost effectiveness (LOE) and also the same controller will be tested on DC motor angular position control with and without noise.FindingsThe key contribution of this work is the discovery of the best approach for generating an optimal vector of values for the fuzzy controller's membership function optimization. This is done in order to improve the controller's performance, bringing the process value of the two-tank level control process closer to the target process value (set point). It is worth noting that the type-1 fuzzy controller that has been optimized is an interval type-2 fuzzy system, which can handle more uncertainty than a type-1 fuzzy system.Originality/valueThe type-1 and type-2 fuzzy-based HS algorithms are designed for optimization of fuzzy controllers for FTC applications, and this research proposes a fuzzy-based HS metaheuristic method. The performance of a fuzzy logic-based HS algorithm applied to a nonlinear two-tank level control process with a main actuator that has LOE will be tested on DC motor angular position control with noise. Two nonlinear uncertain processes are used to demonstrate the effectiveness of the proposed control scheme.
基于模糊的元启发式模糊控制器优化算法:容错控制应用
目的采用基于模糊的元启发式算法对具有不确定性的非线性液位控制系统进行模糊控制器优化,特别是在主执行机构失效时。为了优化模糊控制器,将使用1型谐波搜索(HS)和2型区间搜索(HS)。设计/方法/方法基于1型和2型模糊HS算法设计用于容错控制(FTC)应用中的模糊控制器优化,本研究提出了一种基于模糊HS的元启发式方法。将基于模糊逻辑的HS算法应用于具有失效主执行器(LOE)和同一控制器的非线性双罐液位控制过程,并在有噪声和无噪声直流电机角位置控制上进行性能测试。这项工作的关键贡献是发现了为模糊控制器的隶属函数优化生成最优值向量的最佳方法。这样做是为了提高控制器的性能,使双罐液位控制过程的过程值更接近目标过程值(设定点)。值得注意的是,优化后的1型模糊控制器是一个区间2型模糊系统,它比1型模糊系统能处理更多的不确定性。针对FTC应用中模糊控制器的优化问题,设计了1型和2型模糊HS算法,并提出了一种基于模糊HS的元启发式方法。将基于模糊逻辑的HS算法应用于具有LOE主作动器的非线性双罐液位控制过程,并在带噪声的直流电动机角位置控制上进行性能测试。用两个非线性不确定过程验证了所提控制方案的有效性。
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