AGC of Multi-Area Power Systems in Presence of HVDC Link

Yousfi Boutheina, Delassi Abdelmoumène, Arif Salem
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引用次数: 1

Abstract

This article presents a comparative study in the AGC problem of interconnected power system with and without the presence of a High Voltage Direct Current (HVDC) Link. Simulations were carried out on three areas hydro-thermal power system composed by reheat thermal power plant in the first area and hydro power plants in the second and third area. For more realistic study, the effects of Generation Rate Constraint (GRC), and Governor Dead-Band (GDB) have been considered. Then, the Proportional Integral Derivative (PID) regulator is considered in all areas. The optimal controller settings are tuned using a powerful optimisation algorithm known as Grasshopper optimization Algorithm (GOA) by evaluating the Integral of the Squared Error (ISE). The dynamic responses with and without HVDC link were compared. The robustness of this system has been tested alongside Parametric Variations (PVs). From the obtained results, it is clearly observed the advantage of the HVDC link from different view of point such as: peak overshoots and under shoots, etc.
存在高压直流线路的多区域电力系统的AGC
本文对有和无高压直流(HVDC)线路的互联电力系统的AGC问题进行了比较研究。对由第一区再热热电厂和第二、第三区水电厂组成的三区水热电系统进行了仿真。为了更现实的研究,我们考虑了产率约束(GRC)和调控死带(GDB)的影响。然后,在所有领域都考虑了比例积分导数(PID)调节器。通过评估平方误差(ISE)的积分,使用强大的优化算法(称为Grasshopper优化算法(GOA))来调整最优控制器设置。比较了有无直流供电时的动态响应。该系统的鲁棒性已与参数变化(pv)一起进行了测试。从得到的结果中,可以清楚地从不同的角度观察到高压直流链路的优势,如:峰值过冲和欠冲等。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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