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Automatic generation control in a multi-area conventional and renewable energy based power system using differential evolution algorithm

机译:使用差分进化算法的多区域常规可再生能源电力系统的自动发电控制

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The function of Automatic Generation Control (AGC) is to regulate the output power of the corresponding generator in response to changes in system frequency or tie line loading or in both cases within a prescribed limit. In this paper Differential Evolution (DE) based Proportional-Integral (PI) controller is designed and simulated to observe its performance for a two area Hydro-Thermal power system. The purpose of the DE is to find out the optimal parameter values of the PI controller (Kp and Ki). The Optimal set of values is chosen based on eigenvalue of system matrix and objective function. The performance was evaluated based on the transient response (Settling time and peak overshoot) of the system while different step load changes were applied on both or either of the areas. The proposed controller has been found functioning properly for not only smaller (1%) but also larger (5%) load disturbances. All the simulations are done using MATLAB/SIMULINK software.
机译:自动发电控制(AGC)的功能是响应系统频率或联络线负载的变化,或在两种情况下均在规定的限值内,调节相应发电机的输出功率。本文设计并仿真了基于差分进化(DE)的比例积分(PI)控制器,以观察其在两区水电热力系统中的性能。 DE的目的是找出PI控制器的最佳参数值(Kp和Ki)。根据系统矩阵的特征值和目标函数选择最佳值集。基于系统的瞬态响应(建立时间和峰值过冲)评估了性能,同时在两个或两个区域中的任何一个上施加了不同的阶跃负载变化。已经发现所提出的控制器不仅对于较小的负载干扰(1%),而且对于较大的负载干扰(5%)也能正常工作。所有仿真都是使用MATLAB / SIMULINK软件完成的。

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