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Load Frequency Control Design of Two Area Interconnected Power System Using GWO

机译:使用GWO的两个区域互联电力系统的负载频率控制设计

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This paper describes an important topic regarding with stability of the electrical grid, it is the load frequency control (LFC) problem. At any interconnected-areas of power systems, LFC problem must be solved to ensure system stability without any disturbance. When the amount of generating power is insufficient to meet the electrical load needs, frequency deviation is appeared with instability in power system. Doubly fed induction generator (DFIG) has the ability to support the power system with an additional inertia by supplying it with an extra active power. The studied system in this paper is a two-area thermal-thermal power plants with different participation levels of DFIG at the first area. The exchanged power is flowing between neighboring areas in the studied system through a tie-line. The two power plants in each model are subjected to 2% load perturbations in each area. These load perturbations are applied for examining the ability of Grey Wolf Optimizer (GWO) to restore the stability of studied systems. The optimum performance of power system is achieved when DFIG participation level is high. All time domain simulation results are carried out using MATLAB (R2015a) program for investigating the effectiveness of this method.
机译:本文介绍了关于电网稳定性的重要主题,是负载频率控制(LFC)问题。在任何互连区域的电力系统中,必须解决LFC问题以确保系统稳定性而不会发生任何干扰。当发电功率的量不足以满足电负载需求时,电力系统中的不稳定性出现频率偏差。双馈诱导发电机(DFIG)能够通过以额外的电力提供额外的功率来支持具有额外惯性的动力系统。本文的研究系统是一个两扇区热热发电厂,在第一个区域具有不同的DFIG参与水平。交换功率通过扎线在所研究的系统中的相邻区域之间流动。每个模型中的两个发电厂在每个区域进行2%的负荷扰动。应用这些负载扰动用于检查灰狼优化器(GWO)恢复研究系统稳定性的能力。当DFIG参与水平高时,实现了电力系统的最佳性能。所有时域仿真结果都是使用MATLAB(R2015A)程序进行,用于研究该方法的有效性。

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