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AGC and AVR implementation in a deregulated power system using optimized controller with Renewable integrated DC link

机译:AGC和AVR在解除型电力系统中的实现,采用具有可再生集成直流链路的优化控制器

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This paper deals with automatic generation control (AGC) and Automatic voltage regulator (AVR) in a two-area interconnected deregulated power system with and without direct current (DC) link. Now a day, increase in generation from renewable energy sources (RES) in an integrated power system is keep on increasing significantly. This present work describes a system dynamic model, with thermal generating sources and RES (Solar and wind Power model) for studying the AGC and AVR of system. The secondary controller in the AGC loop is optimally designed and compared by considering the Proportional integral (PI), Proportional integral derivative (PID) and Fuzzy logic controller (FLC). The results show that the FLC with DC link gives the better results as compared with other two controllers. The simulation result reveals that FLC gives better performance with respect to number of overshoots, settling time, peak deviations, and oscillations in both constant and variable distributed participation matrix. All the control strategies are implemented and the simulation results are showed using MATLAB/Simulink.
机译:本文涉及具有且不直接电流(DC)链路的双面互连的管制电力系统中的自动发电控制(AGC)和自动电压调节器(AVR)。现在,一天,集成电力系统中的可再生能源(RES)的产生增加是显着增加的。本工作描述了一种系统动态模型,具有用于研究AGC和系统的AGC和AVR的热发电源和RES(太阳能和风电模型)。通过考虑比例积分(PI),比例积分导数(PID)和模糊逻辑控制器(FLC),通过考虑比例积分(比例积分衍生(FLC)来最佳设计AGC环路中的辅助控制器。结果表明,与其他两个控制器相比,FLC与DC链路提供更好的结果。仿真结果表明,FLC在恒定和可变分布式参与矩阵中的过冲,稳定时间,峰值偏差和振荡的数量提供更好的性能。实现了所有控制策略,并使用MATLAB / Simulink显示仿真结果。

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