Optimal Parameters Model Predictive Control for Single Area Load Frequency Control

M. A. Ghany, M. S. Shams, sherouk Ibrahim
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Abstract

In this paper, a new load frequency control (LFC) using the model predictive control MPC technique is presented. The MPC technique has been designed such that the effect of the uncertainty due to governor and turbine parameters variation and load disturbance is reduced. A simplified frequency response model is introduced, and physical constraints of the governor and turbine are considered in this model. The model was employed in the MPC structure. The optimal parameter values of MPC were obtained using a Genetic Algorithm (GA) based on a certain cost function. The presented MPC is compared against a conventional proportional integral derivative (PID) controller. Simulations show that the MPC gives a better frequency response while using cheaper resources. The simulation results illustrate that MPC could be a realistic solution to some of the LFC problems power systems are facing today. Also, it can absorb and predict the different types of disturbances.
单区负荷频率控制的最优参数模型预测控制
本文提出了一种基于模型预测控制技术的负载频率控制方法。MPC技术的设计减小了调速器和汽轮机参数变化和负荷扰动的不确定性的影响。提出了一种简化的频率响应模型,该模型考虑了调速器和汽轮机的物理约束。该模型应用于MPC结构。采用基于一定代价函数的遗传算法求解MPC的最优参数值。将MPC与传统的比例积分导数(PID)控制器进行了比较。仿真结果表明,MPC在使用更便宜的资源的情况下具有更好的频率响应。仿真结果表明,MPC可以很好地解决当前电力系统所面临的一些LFC问题。此外,它还能吸收和预测不同类型的干扰。
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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