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Optimal Robust Control Scheme to Enhance Power System Oscillations Damping via STATCOM

机译:通过STATCOM增强电力系统振荡阻尼的最佳鲁棒控制方案

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Static Synchronous Compensator (STATCOM) is one of the most effective Flexible AC Transmission Systems (FACTS) devices, which is often modeled as a controllable reactive current source for voltage control and power system stability enhancement. This paper proposes a novel robust control scheme for a Single Machine Infinite Bus (SMIB) system connected to a STATCOM. The proposed scheme has been introduced in a multi-objective optimization framework. Also, three control systems are applied to improve the speed and voltage oscillations damping and guarantee the power system stability. The proposed model is carried out on each of these control systems to adjust the coefficients of their controllers. In the methodology phase, a modified version of the non-domination based genetic algorithm (NSGAII) is first used to find Pareto optimal solution and then the Programming Technique for Multidimensional Analysis of Preference (LINMAP) method is applied to reach the most preferred solution. Finally, by simulating the proposed model on the proposed control systems, their performance is investigated on dynamic stability and oscillations damping, and the efficiency of the proposed model is approved.
机译:静态同步补偿器(Statcom)是最有效的灵活交流传输系统之一(事实)设备之一,其通常被建模为可控的电压控制和电力系统稳定性增强的可控反应电流源。本文提出了一种用于连接到Statcom的单机无限总线(SMIB)系统的新型鲁棒控制方案。该拟议方案已在多目标优化框架中引入。此外,应用了三种控制系统以提高速度和电压振荡阻尼,并保证电力系统稳定性。所提出的模型在这些控制系统中的每一个上进行以调整控制器的系数。在方法阶段,首先使用基于非统治基于遗传算法(NSGaii)的修改版本来找到Pareto最佳解决方案,然后应用用于多维偏好(Linmap)方法的编程技术来达到最优选的解决方案。最后,通过在所提出的控制系统上模拟所提出的模型,对动态稳定性和振荡阻尼进行了调查了它们的性能,并且批准了所提出的模型的效率。

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