基于滑模控制和扰动观测器的自适应负载频率控制

Boming Zhang, Tat Kei Chau, H. Iu, Paul McCormick
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引用次数: 0

摘要

为了保持电力系统的稳定运行,负载频率控制器的设计是一项关键任务。本文构造了一种基于扰动观测器的自适应滑模控制(ADOB-SMC),通过引入扰动观测器,减轻了对扰动先验知识的要求。为了获得更好的控制性能,将自适应恒趋近律集成到ADOB-SMC中。与传统的比例积分(PI)控制器相比,该控制器可以有效地将频率偏差调节到零,并且产生的超调量较少。此外,与传统滑模控制(SMC)相比,所提出的ADOB-SMC控制器对系统扰动的先验知识依赖较小。考虑到西澳大利亚州的实际情况,构建了两个案例来测试所提出方法的性能。利用MATLAB/Simulink进行了仿真研究,验证了所提控制器的性能。
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An Adaptive Load Frequency Control Based on Sliding Mode Control and Disturbance Observer
To maintain the stability of the power system, the load frequency controller design is one critical task. In this paper, an adaptive disturbance observer-based sliding mode control (ADOB-SMC) is constructed, which relaxes the requirement for having prior knowledge of the disturbance by introducing a disturbance observer. To achieve better control performance, the adaptive constant reaching law is integrated into the proposed ADOB-SMC. The proposed controller can effectively regulate the frequency deviation to zero, and produce less overshoots compared with the conventional proportional-integral (PI) controller-based methods. In addition, the proposed ADOB-SMC controller has less dependence on prior knowledge on the system disturbance than the traditional sliding mode control (SMC). Considering the real situation in Western Australia (WA), two cases are constructed to test the performance of the proposed methods. The performance of the proposed controller is verified by simulation studies using MATLAB/Simulink.
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