利用积分控制器和基于LQR的积分控制器对单区混合电力系统的负荷频率进行控制

Rajasi Mandal, K. Chatterjee, Bhavesh Patil
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引用次数: 10

摘要

针对基于风力发电源的热电、水力、燃气和双馈感应发电机组成的单区域电力系统,提出了一种用于设计负荷频率控制器的数学状态空间模型。负荷频率控制将电力系统的频率保持在规定的范围内。电力系统的负荷频率控制可采用不同类型的控制器。本文采用了两种不同的控制器来实现系统的LFC。积分(I)控制器是LFC的经典方法,而基于线性二次调节器的积分(LQR-I)控制器通过全状态反馈LQR控制器实现对所有状态的最优控制。通过对结果的研究和比较,我们发现LQR-I控制器在稳定时间、超调量等方面的LFC优于积分(I)控制器,系统的稳定性也优于积分(I)控制器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Load frequency control of a single area hybrid power system by using integral and LQR based integral controllers
The paper presents a mathematical state space model to design load frequency controllers for a single area power system consisting of thermal, hydro, gas and doubly fed induction generator based wind power generation sources. Load frequency control maintains the frequency of a power system within a prescribed limit. Different types of controllers can be used for load frequency control (LFC) of the power system. In this paper, two various kinds of controllers have used for LFC of the system. Integral (I) controller is a classical approach of LFC whereas linear quadratic regulator based integral (LQR-I) controller optimally controls all the states through the full-state feedback LQR controller. After studying and comparing the results, it has been observed that LQR-I controller provides better LFC in terms of settling time, overshoot etc and better stability to the system compared to the integral (I) controller.
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