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首页> 外文期刊>American journal of engineering and applied sciences >Comparison of Different Control Strategies in GA-Based Optimized UPFC Controller in Electric Power Systems | Science Publications
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Comparison of Different Control Strategies in GA-Based Optimized UPFC Controller in Electric Power Systems | Science Publications

机译:电力系统中基于GA的优化UPFC控制器中不同控制策略的比较|科学出版物

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摘要

> This study presents a study of the application of a Unified Power Flow Controller (UPFC) to control power transmission, generator terminals voltage and better damping of Low Frequency Oscillation (LFO) in Single-Machine Infinite-Bus (SMIB) power system. The UPFC integrates properties of both shunt and series compensations and can effectively alter power system parameters in a way that increases power transfer capability and stabilizes system. In practice systems use simple Proportional Integral (PI) controllers for control of UPFC. However, since the PI control parameters are usually tuned based on classical or trial-and-error approaches, they are incapable of obtaining a good dynamic performance for a wide range of operation conditions. To address this problem, in this research an optimization approach, based on the Genetic Algorithms (GA) method is proposed for the design of UPFC controllers (power-flow controller, DC-voltage regulator and generator terminals voltage controller) and also supplementary damping controller for increase damping of power system oscillations is developed. A SMIB power system installed with a UPFC is considered for case study. Several linear time-domain simulation tests visibly show the effectiveness and validity of proposed method in control of power transmission, terminal voltage of generator and enhance of LFO damping.
机译: >这项研究提出了一种应用统一潮流控制器(UPFC)来控制单机无穷大总线中的电力传输,发电机端子电压和更好地抑制低频振荡(LFO)的应用的研究。 SMIB)电源系统。 UPFC集成了分流和串联补偿的特性,可以有效地更改电力系统参数,从而增加电力传输能力并稳定系统。实际上,系统使用简单的比例积分(PI)控制器来控制UPFC。但是,由于PI控制参数通常是基于经典方法或反复试验的方法进行调整的,因此它们无法在广泛的运行条件下获得良好的动态性能。为了解决这个问题,在本研究中,提出了一种基于遗传算法(GA)方法的优化方法,用于UPFC控制器(功率流控制器,DC电压调节器和发电机端子电压控制器)以及辅助阻尼控制器的设计。为了增加电力系统振荡的阻尼而开发的。案例研究考虑了安装了UPFC的SMIB电源系统。若干线性时域仿真测试表明,该方法在控制输电,发电机端电压和增强LFO阻尼方面是有效的。

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