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Study for Arrangement of the Smoothing Reactor in ?±800kV UHVDC Project

机译:±±800kV特高压直流工程中的平波电抗器布置研究

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Normally, the smoothing reactor in ?±500kV HVDC system is installed on the pole bus. It's the first time for the application in UHVDC project of the 50/50 split of the smoothing reactor, i.e. half of the required smoothing reactance of the converter station is connected with pole bus and the rest is connected with the neutral bus. In this article, in comparison with the scheme of all smoothing reactors installed on DC pole bus, the influences of the smoothing reactors connected with pole bus and neutral bus on the system peak/crest of the continuous operating voltage (PCOV/CCOV) and on the insulation coordination of the converter station are focused on discussion. Also the PSCAD/EMTDC program is used for the DC transient overvoltage (DCTOV) calculation in detail for arrangement schemes comparing. All of the studies is based on the Yun-Guang ?±800kV UHVDC project. With considering of the type selection, manufacture and the investment of the smoothing reactor, the conclusion will be drawn in this article: the different smoothing reactor arrangement scheme will bring the obvious influence on the production, transport and the cost of the important equipment in the UHVDC project. After the issues are analyzed economically and technically, the optimum scheme with split installation of the smoothing reactor is determined finally.
机译:通常,在±±500kV高压直流输电系统中的平滑电抗器安装在极总线上。这是首次在UHVDC工程中使用50/50比例的平滑电抗器,即换流站所需的平滑电抗的一半与极母线连接,其余与中性线连接。在本文中,与所有安装在直流极点母线上的平滑电抗器的方案相比,与极点母线和中性母线相连的平滑电抗器对系统连续工作电压峰值/峰值(PCOV / CCOV)的影响以及对换流站的隔热协调将集中讨论。 PSCAD / EMTDC程序也用于直流瞬态过电压(DCTOV)的计算,详细用于比较配置方案。所有研究均基于云广±800kV特高压直流输电项目。在考虑平整反应器的选型,制造和投资的基础上,得出以下结论:不同的平整反应器布置方案将对平整反应堆重要设备的生产,运输和成本产生明显的影响。特高压直流项目。在对问题进行了经济和技术分析之后,最终确定了分步安装平滑反应器的最佳方案。

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