输电线路正交磁通可控电抗器

Xiaobo Yang, Chengyan Yue
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引用次数: 7

摘要

与定值高压并联电抗器相比,可控并联电抗器可以提高输电能力,抑制过电压,为特高压/特高压交流输电线路的应用提供动态电压支持。在各种可控电抗器方案中,磁饱和式可控电抗器以其成本低、占地面积小而引人注目。磁饱和型可控电抗器根据控制绕组产生的磁通方向可分为磁控电抗器(MCR)和正交磁通型可控电抗器。本文将介绍正交磁通可控电抗器。首先介绍了正交磁通型可控电抗器的基本概念,推导了不同直流磁化强度下的磁化行为。其次,利用Matlab/Simulink建立了正交磁通可控电抗器的数学模型。最后,根据模型对所设计的可控反应器的性能进行了分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Orthogonal flux controllable reactor for transmission lines
Compared with fixed value high voltage shunt reactor, the controllable shunt reactor can increase the transmission capability, suppress the over voltage and provide dynamic voltage support for the UHV/EHV AC transmission line application. Among various controllable reactor schemes, the magnetic saturation type controllable reactor is remarkable for its low cost and low footprint. According to the direction of flux, which is generated by control winding, the magnetic saturation type controllable reactor can be categorized into two types: Magnetically Controlled Reactor (MCR) and orthogonal-flux type controllable reactor. In this paper, the orthogonal flux controllable reactor will be presented. Firstly, the basic concept of orthogonal flux type controllable reactor is introduced and the magnetizing behaviors under different DC magnetizing strength are deduced. Secondly, the mathematic model of the orthogonal flux controllable reactor is established by using Matlab/Simulink. Finally, the performance of the designed controllable reactor is analyzed based on the model.
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