SCT based deadbeat control in power system stability improvement

A. Halder, Debasish Mondal
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Abstract

This paper presents the method of design of a nonlinear deadbeat control in order to improve the transient stability of a Single Machine Infinite Bus (SMIB) power system in addition with STATCOM controller. The non-linear model of an SMIB system has been linearized using Feedback linearization technique. A novel approach of design of deadbeat control, known as Signal Correction Technique (SCT) is employed to generate an additional control signal from the dynamics of the system which is incorporated to the original non-linear system through an additional feedback loop. The additional corrected signal modifies the transient oscillations of the output of the test system to a deadbeat output. The performance of the test system with SCT based deadbeat control has been compared with the performance with nonlinear STATCOM controller. It has been observed that the proposed test system with SCT based deadbeat controller produces deadbeat response and improves transient stability significantly than the nonlinear STATCOM controller.
基于SCT的无差拍控制在电力系统稳定性改善中的应用
为了提高单机无限总线(SMIB)电力系统的暂态稳定性,本文在STATCOM控制器的基础上,提出了一种非线性无差拍控制器的设计方法。采用反馈线性化技术对SMIB系统的非线性模型进行了线性化处理。采用一种新颖的无差拍控制设计方法,即信号校正技术(SCT),从系统的动力学中产生额外的控制信号,通过附加的反馈回路将其纳入原始非线性系统。附加的校正信号将测试系统输出的瞬态振荡修改为无差拍输出。比较了采用SCT无差拍控制的测试系统与采用非线性STATCOM控制器的测试系统的性能。研究发现,与非线性STATCOM控制器相比,基于SCT的无差拍控制器的测试系统产生无差拍响应,显著提高了暂态稳定性。
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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