Load frequency control in power system using feed-forward internal model control

Abhishek Kumar, T. Dan
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引用次数: 5

Abstract

In an interconnected power system, both tie-line power switching and area frequency fluctuation occurs frequently due to system parameter uncertainties modeling error and environmental disturbance. The load frequency control (LFC) is concentrated on to minimize the transient deviation in these variables (both tie-line power switching and area frequency) and when power demand transient, to bring the steady state frequency error to zero. This paper is worked on two degree of freedom (2DF) internal Model Control (IMC) with feed forward controller and IMC filter design, recently developed by Liu and Gao [3] to improve disturbance rejection and to minimize the effect of uncertainties. The feed-forward is added with Saxena and Hote [4] reported work on SOPDT model and results increasing in the robustness of the system.
电力系统负荷频率控制采用前馈内模控制
在互联电力系统中,由于系统参数的不确定性、建模误差和环境干扰等因素,频繁发生配线功率切换和区域频率波动。负荷频率控制(LFC)的重点是在电力需求暂态时,使这些变量(交接线功率开关和区域频率)的暂态偏差最小,使稳态频率误差为零。本文研究了具有前馈控制器和IMC滤波器设计的两自由度(2DF)内模控制(IMC), Liu和Gao[3]最近开发了该方法,以提高抗干扰性并将不确定性的影响降至最低。前馈加入了Saxena和Hote[4]对SOPDT模型的研究,结果表明系统的鲁棒性增加。
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