基于LCC的±800 kV特高压直流换流站电磁干扰研究与宽带建模

Bilal Masood, G. Song, Luluwah Al-Fagih, Junjie Hou, R. M. Asif
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引用次数: 0

摘要

传统的高压直流(HVDC)电网配备了一系列承载高阶谐振频率的非线性器件。基于线路换向变换器(LCC)的高压直流变换器在晶闸管阀的开关过程中会产生宽带电磁干扰(EMD)。这种EMD在整个高压直流系统中传播,并通过导电和电感耦合影响初级和次级电路的性能。线路故障、雷电和开关瞬态进一步使高频EMD问题复杂化。本文提出了LCC模块和塔的宽带模型,以便对EMD特性进行深入的分析。之前忽略的宽带参数以及由晶闸管阀产生的背景和脉冲噪声也被建模并注入到LCC阀模块中。LCC站的宽带建模有助于克服EMD预测、过电压等问题,特别是有利于规范现有继电保护系统存在的问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation and Wideband Modeling of LCC based ±800 kV UHVDC Converter Station for Electromagnetic Disturbance
The Traditional high voltage direct current (HVDC) grids are equipped with a range of non-linear devices carrying high order of resonance frequencies. The line commutated converter (LCC) based HVDC converters generate a wideband electromagnetic disturbance (EMD) during the switching ON and OFF process of thyristor valves. This EMD is propagated throughout the HVDC system and influences the performance of primary and secondary circuits by conductive and inductive couplings. Line faults, lightning and switching transients further complicate the high frequency (HF) EMD issues. This paper presents the wideband model of LCC module and tower for the insightful analysis of EMD characteristics. The previously ignored wideband parameters along with background and impulsive noise produced from thyristor valves are also modeled and injected in the LCC valve module. The wideband modeling of LCC station will help to overcome the issues of EMD prediction, overvoltage and especially will facilitate to standardize the existing issues of the current relay protection system.
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