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Optimal AGC regulator for multi-area interconnected power systems with parallel AC/DC links

机译:具有并联AC / DC链路的多区域互连电源系统的最佳AGC调节器

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The problem of simultaneous tuning of the automatic generation control (AGC) regulator’s gains of multi-area interconnected power system is carried out in this manuscript. Based on the types of area interconnections, a power system model consisting of reheat turbines is investigated by two test cases for the AGC study. In one of the test case AC link is used as area interconnection, whereas the parallel combination of AC/DC links is used as area interconnection in other test case. Each test case control area is consisting of plants with reheat thermal turbines. Genetic algorithm (GA) is used to globally optimize the gains of proportional integral-based AGC regulators with simultaneous optimization of frequency bias coefficient and tie-line power flows. The dynamic response curves are obtained for various system states with the implementation of designed GA-based AGC regulators considering 1% load perturbation in one of the areas. The conventional AGC regulators are also developed using the popularly known Ziegler–Nichols technique. The investigations carried out demonstrate the superiority of proposed regulators over the conventional AGC regulators. The incorporation of DC link in parallel with AC link as an area interconnection has also exhibited favorable effect on dynamic response of the system.
机译:本手册解决了自动发电控制(AGC)调节器对多区域互联电源系统的增益进行同时调整的问题。根据区域互连的类型,通过两个测试用例研究了由再热涡轮机组成的电力系统模型,以进行AGC研究。在一个测试用例中,AC链接用作区域互连,而在其他测试用例中,AC / DC链接的并行组合用作区域互连。每个测试用例控制区域均由带有再热式热力涡轮机的工厂组成。遗传算法(GA)用于全局优化基于比例积分的AGC调节器的增益,同时优化频率偏置系数和联络线功率流。通过考虑一个区域中1%的负载扰动,通过设计基于GA的AGC调节器,可以获得各种系统状态的动态响应曲线。传统的AGC调节器也使用广为人知的Ziegler-Nichols技术开发。进行的研究表明,建议的调节器优于传统的AGC调节器。 DC链接与AC链接并行作为区域互连并入,对系统的动态响应也显示出良好的效果。

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