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Power System Transient Stability Analysis Based on Evolutionary Interval Type-2 Fuzzy Logic Controller and GA System

机译:基于进化区间2型模糊逻辑控制器和遗传算法的电力系统暂态稳定性分析

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This work aims to develop a controller based on evolutionary interval type-2 fuzzy logic to simulate an automatic voltage regulator (AVR) in transient stability power system analysis. It was simulated a one machine control to check if the evolutionary interval type-2 fuzzy logic controller (EIT2FLC) implementation was possible. After which results were compared to the results obtained with the AVR itself. The traditional type-1 Fuzzy Logic Controller (FLC) using precise type-1 fuzzy sets cannot fully handle such uncertainties. A type-2 FLC using type-2 fuzzy sets can handle such uncertainties to produce a better performance. However, manually designing the type-2 Membership Functions (MFs) for an interval type-2 FLC is a difficult task. This paper will present Genetic Algorithm (GA) based architecture to evolve the type-2 MFs of interval type-2 FLCs used for transient stability power system analysis. The GA based system converges after a small number of iterations to interval type-2 MFs which gave very good performance. The control of synchronous generator terminal voltage and reactive power has been a disturbing problem to researchers and designers of power system engineers. This paper uses the evolutionary interval type-2 fuzzy logic scheme for automatic voltage regulation of synchronous generators and observes that it is superior to convectional AVR controllers because it can tune the controller parameters and remembers what it tuned before. The simulation results obtained using evolutionary interval type-2 fuzzy logic scheme during abnormal operation of power system network shows reduction in settling time, percentage overshoot and steady state error.
机译:这项工作旨在开发一种基于演化区间2型模糊逻辑的控制器,以模拟瞬态稳定电力系统分析中的自动电压调节器(AVR)。它被模拟为一台机器控制,以检查进化间隔2型模糊逻辑控制器(EIT2FLC)实现是否可行。之后,将结果与AVR本身获得的结果进行比较。使用精确的第1类模糊集的传统第1类模糊逻辑控制器(FLC)无法完全处理此类不确定性。使用类型2模糊集的类型2 FLC可以处理此类不确定性,以产生更好的性能。但是,为间隔类型2 FLC手动设计类型2隶属函数(MF)是一项艰巨的任务。本文将提出基于遗传算法(GA)的体系结构,以发展用于暂态稳定电力系统分析的间隔2型FLC的2型MF。基于GA的系统经过少量迭代后收敛到间隔2型MF,这提供了非常好的性能。同步发电机端电压和无功功率的控制一直是电力系统工程师的研究人员和设计人员所困扰的问题。本文使用进化间隔2型模糊逻辑方案对同步发电机进行自动电压调节,并发现它优于对流AVR控制器,因为它可以调节控制器参数并记住其以前调节过的参数。在电力系统网络异常运行期间使用进化间隔2型模糊逻辑方案获得的仿真结果表明,建立时间减少,超调百分比和稳态误差减少。

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