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A Complementary SVC-Based Controller Design for Damping Both Local and Inter-Area Oscillating Modes Using NSGA-Ⅱ Algorithm

机译:基于SVC的互补控制器设计,利用NSGA-Ⅱ算法抑制局部和区域间的振荡模式

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摘要

Static Var compensator (SVC) is one of flexible AC transmission system (FACTS) elements mainly used for reactive power and voltage control in power systems. This paper deals with multi-modal electromechanical oscillations damping in the presence of severe disturbances. These oscillations include local modes, inter-area modes and inter-plant modes. To enhance the damping of the oscillations, the complementary controller is added to voltage regulator of SVC. In order to design such a controller, as a significant contribution of this paper, either of oscillating modes is considered as a distinct objective function and a multi-objective optimization model is employed to improve all these oscillating modes simultaneously. Accordingly, in this paper, the non-dominated sorting genetic algorithm-Ⅱ (NSGA-Ⅱ) approach is used to optimize all the parameters of complementary controller with the aim of minimizing all three objective functions. By applying NSGA-Ⅱ method 10 non-dominated solutions are generated, and a fuzzy method is utilized to select the best compromise solution among the produced solutions. The well-tuned complementary SVC-based controller is examined on a two area power system and results obtained through simulating different cases illustrate the robustness and the efficiency of the proposed controller.
机译:静态无功补偿器(SVC)是柔性交流输电系统(FACTS)元件之一,主要用于电力系统中的无功功率和电压控制。本文研究在存在严重干扰的情况下的多模式机电振荡阻尼。这些振荡包括局部模式,区域间模式和工厂间模式。为了增强振荡的阻尼,将互补控制器添加到SVC的电压调节器中。为了设计这样的控制器,作为本文的重要贡献,将两种振荡模式中的任一种视为独特的目标函数,并采用多目标优化模型来同时改善所有这些振荡模式。因此,本文采用非支配排序遗传算法-Ⅱ(NSGA-Ⅱ)方法对互补控制器的所有参数进行优化,目的是使所有三个目标函数最小。应用NSGA-Ⅱ方法生成了10种非支配解,并运用模糊方法从产生的解中选择了最佳折衷解。在两个区域的电力系统上检查了调谐良好的基于​​互补SVC的控制器,通过模拟不同情况获得的结果说明了所提出控制器的鲁棒性和效率。

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