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Coordination of synergetic excitation controller and SVC damping controller using particle swarm optimization

机译:使用粒子群优化协调协调协调励磁控制器和SVC阻尼控制器

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This paper addresses the enhancement of power system stability by simultaneous tuning of synergetic excitation damping controller and Static Var Compensator (SVC) — based damping controllers. Each machine or generator is considered as a subsystem and its interaction with the remaining part of the system, the SVC inclusive, is modeled as a quadratic function of the active power delivered by the generator. Stable manifold is constructed for each excitation controller and based on that, an effective damping controller is derived. A lead — lag compensator is employed as a supplementary controller for the SVC. PSO algorithm is effectively utilized to simultaneously tune the parameters for the excitation damping controller(s) and the SVC supplementary controller. The coordination of the controllers effectively dampens the power angle oscillation and regulates the generator terminal voltage when a fault occurs. Simulation results are obtained using the Power Analysis Toolbox (PAT) for a Single Machine Infinite Bus (SMIB) system and a two area power system.
机译:本文通过同时调整协同励磁阻尼控制器和基于静态VAR补偿器(SVC)的阻尼控制器来解决电力系统稳定性的提高。每台机器或发电机被认为是子系统,其与系统的剩余部分的交互,SVC包含的SVC被建模为发电机传递的有功功率的二次函数。为每个激励控制器构造稳定的歧管,并基于该液位,导出有效阻尼控制器。引线滞后补偿器用作SVC的补充控制器。 PSO算法有效地利用了同时调整激发阻尼控制器和SVC补充控制器的参数。控制器的协调有效地抑制了电源角振荡并在发生故障时调节发电机端电压。使用功率分析工具箱(PAT)获得仿真结果,用于单机无限总线(SMIB)系统和两个区域电力系统。

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