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Intelligent coordinators for automatic voltage regulator and power system stabiliser in a multi-machine power system

机译:多机电源系统中自动稳压器和电力系统稳定器的智能协调器

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摘要

This study presents the design of intelligent coordinators for the automatic voltage regulator (AVR) and power system stabiliser (PSS) in a multi-machine power system. The intelligent coordinators are designed to update the gains of AVR and PSS in severe disturbances to guarantee the stability of the studied power system. Three potent intelligent coordinators are proposed: (a) fuzzy logic coordinator, (b) artificial neural network coordinator, and (c) brain emotional learning coordinator. Since the intelligent coordinators are based on the knowledge of the experts, desirable scaling factors are considered in the output signals of the coordinators to achieve optimal results. The scaling factors are optimised using a new evolutionary approach known as the sine-cosine algorithm. To evaluate the efficiency of the proposed intelligent approaches, the performances of coordinators are analysed on a two-area four-machine power system. A range of power system signals, such as rotor speed, terminal voltages, acceleration power and rotor angle of generators are demonstrated to approve and compare the performance of the intelligent coordinators. The simulation results indicate that the intelligent coordinators can guarantee the stability of the power system and satisfy performance objectives, such as desired transient and steady-state errors.
机译:本研究介绍了多机电源系统中自动电压调节器(AVR)和电力系统稳定器(PSS)的智能协调器的设计。智能协调员旨在更新严重干扰中的AVR和PSS的收益,以保证所研究的电力系统的稳定性。提出了三个有效的智能协调员:(a)模糊逻辑协调员,(b)人工神经网络协调员,(c)脑情绪学习协调员。由于智能协调员基于专家的知识,因此在协调器的输出信号中考虑了所需的缩放因子,以实现最佳结果。使用称为正弦余弦算法的新进化方法优化缩放因子。为了评估所提出的智能方法的效率,在两扇区四机电力系统上分析协调器的性能。一系列电力系统信号,例如转子速度,终端电压,加速度和发电机转子角度,以批准和比较智能协调器的性能。仿真结果表明,智能协调器可以保证电力系统的稳定性和满足性能目标,例如所需的瞬态和稳态误差。

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