Converter valve design and valve testing for Xiangjiaba - Shanghai ±800kV 6400MW UHVDC power transmission project

B. Sheng, J. Danielsson, Yanny Fu, Zehong Liu
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引用次数: 9

Abstract

Thyristor valve design merits are inherited and new developed high power rating thyristors are used in the valve design. The thyristor control unit (TCU) and snubber circuit are optimized for a high reliability and low loss of thyristor valves. Two 12-pulse converters are connected in series as one converter per pole. The converters use a double valve MVU structure. A careful designed rigorous type test program has been followed to verify the valve and converter design. A single valve is comprehensively dielectric type tested and operational type tested. High voltage valve hanging structure, low voltage valve hanging structure and MVU, plus the series connected valve simulator, are valve supporting structure dielectric tested and MVU dielectric tested. The test results indict that the valve voltage and converter design and protection are proper and there is a substantial margin in operation since, for most of the operational tests, the test parameters were globally more severe than specified.
向家坝至上海±800kV 6400MW特高压直流输电工程换流阀设计及阀门试验
在继承晶闸管阀门设计优点的基础上,采用新开发的高额定功率晶闸管进行阀门设计。晶闸管控制单元(TCU)和缓冲电路进行了优化,使晶闸管阀具有高可靠性和低损耗。两个12脉冲变换器串联在一起,每极一个变换器。转换器采用双阀MVU结构。遵循了精心设计的严格型式试验程序来验证阀门和转换器的设计。单个阀门综合介电型式试验和操作型式试验。高压阀门悬挂结构、低压阀门悬挂结构和MVU,加上串联的阀门模拟器,分别是阀门支承结构的介电试验和MVU的介电试验。试验结果表明,阀门电压和转换器设计和保护是合理的,并且在运行中有很大的余量,因为对于大多数运行试验,测试参数总体上比规定的更严格。
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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