基于模糊逻辑- pid控制器的多区域电力系统负荷频率控制

Nour E. L. Yakine Kouba, M. Menaa, M. Hasni, M. Boudour
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引用次数: 44

摘要

在一个互联的多区域电力系统中,由于电力负荷需求是随机变化的,在任何区域的负荷发生小的突然变化的情况下,区域频率和联络线潮流互换也会发生变化。负荷频率控制(LFC)的主要目标是将互联电力系统的频率和期望输出功率保持在预定值,并控制控制区域之间的联络线潮流的变化。本文的主要目的是介绍基于模糊控制器(FLC)的PID负载频率控制在多区域互联电力系统中的应用。采用模糊逻辑对PID控制器参数进行寻优。采用3区9单元模型系统进行仿真,得到了在1区、2区和3区受阶跃负荷扰动的瞬态响应。主要目标是抑制系统频率和联络线潮流的所有波动。通过与传统的Ziegler-Nichols方法(Z-N)和启发式粒子群优化方法(PSO)的比较,验证了所提方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Load Frequency Control in multi-area power system based on Fuzzy Logic-PID Controller
In an interconnected multi-area power system, as a power load demand varies randomly, in the case of any small sudden load change in any of the areas, both area frequency and tie-line power flow interchange also vary. The main goals of Load Frequency Control (LFC) are, to hold the frequency and the desired power output in the interconnected power system at the scheduled values and to control the change in the tie-line power flow between control areas. The purpose of this paper is to present basically an application of Fuzzy Logic Controller (FLC) based load frequency control using PID controller in multi-area interconnected power system. The fuzzy logic is employed to search for optimal values for the PID controller parameters. The three-area 9-unit model system is used for the simulation, and the transient responses are shown due to step load disturbances in area-1, area-2 and area-3. The main primary objective is to suppress all the fluctuation of the system frequency and tie-line power flow. By comparison to the conventional Ziegler-Nichols technique (Z-N) and to the heuristic Particle Swarm Optimization method (PSO), the effectiveness of the proposed method is confirmed.
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