Load-frequency control scheme for power systems using smoothed switching structure theory

Ming-Sheng Yang
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引用次数: 3

Abstract

A design scheme of smoothed switching structure theory based load-frequency control for power systems including parameter uncertainties is presented in this paper. However, knowledge about the bounds of the parameter uncertainties is required for controller design. The basic concept and design scheme of switching structure control are briefly discussed. The design process of load-frequency control using a linearized model with parameter uncertainties, which are obtained by simultaneously changing parameters by 55% to 95% from their nominal values, consists of key steps including both approximating continuous control law with sliding mode property, and the special switching hyperplane to enhance the system stability degree. The simulation results show that the proposed controller can not only improve the dynamic stability of the power system but also achieves good performance for all admissible uncertainties.
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基于平滑开关结构理论的电力系统负载频率控制方案
提出了一种基于平滑开关结构理论的含参数不确定性电力系统负载频率控制的设计方案。然而,控制器设计需要了解参数不确定性的边界。简要讨论了开关结构控制的基本概念和设计方案。采用具有参数不确定性的线性化模型进行负载-频率控制的设计过程,通过同时改变参数标称值的55% ~ 95%来获得参数不确定性,其关键步骤包括逼近具有滑模特性的连续控制律和提高系统稳定性的特殊切换超平面。仿真结果表明,所提出的控制器不仅能提高电力系统的动态稳定性,而且对所有允许的不确定性都有较好的控制性能。
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