首页> 外文期刊>Revue roumaine des sciences techniques >FUZZY AND PROPORTIONAL INTEGRAL CONTROLLER DESIGN FOR THYRISTOR CONTROLLED SERIES CAPACITOR AND POWER SYSTEM STABILIZER TO IMPROVE POWER SYSTEM STABILITY
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FUZZY AND PROPORTIONAL INTEGRAL CONTROLLER DESIGN FOR THYRISTOR CONTROLLED SERIES CAPACITOR AND POWER SYSTEM STABILIZER TO IMPROVE POWER SYSTEM STABILITY

机译:晶闸管控制串联电容器和电力系统稳定器的模糊和比例积分控制器设计,以提高电力系统的稳定性

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摘要

Low frequency oscillations can cause power system instability. This paper introduces a proportional integral (PI) controller according to Fuzzy-Sugeno logic (FPI) for a thyristor controlled series capacitor (TCSC) in order to improve the stability and to damp the low frequency oscillations. This controller is used with a lead-lag controller for a power system stabilizer (PSS) in a single-machine infinite-bus system. Also, an independent fuzzy controller for PSS is designed to demonstrate the capability of FPI controller. Three following compositions of the controllers are implemented to control TCSC and PSS at the same time: (Ⅰ) two lead-lag controllers together for TCSC and PSS, (Ⅱ) a fuzzy controller for PSS with a lead-lag controller for TCSC and (Ⅲ) a lead-lag controller for PSS with a FPI controller for TCSC. Simulation results show that the designed fuzzy and PI (FPI) controller is robust against different loads and faults.
机译:低频振荡会导致电力系统不稳定。本文针对晶闸管控制的串联电容器(TCSC)引入了一种基于模糊-Sugeno逻辑(FPI)的比例积分(PI)控制器,以提高稳定性并抑制低频振荡。该控制器与超前滞后控制器一起使用,用于单机无限总线系统中的电源系统稳定器(PSS)。此外,为PSS设计了独立的模糊控制器,以演示FPI控制器的功能。实现以下三个控制器的组合,以同时控制TCSC和PSS:(Ⅰ)两个TCSC和PSS的超前滞后控制器,(Ⅱ)PSS的模糊控制器和TCSC的超前滞后控制器,以及( Ⅲ)PSS的超前滞后控制器和TCSC的FPI控制器。仿真结果表明,所设计的模糊和PI(FPI)控制器对于不同的负载和故障具有鲁棒性。

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