Control Strategies for Multi-Terminal DC Transmission System with Special Parallel Topology

Yun Su, Shaohua Li, Binbin Li, Xiaoting Ma, Dongxiao Yao, Wang Zhang
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Abstract

With the development of high voltage direct current (HVDC) transmission technology, parallel converters have received increasing attentions. The multi-terminal dc (MTDC) system with parallel connection of converters is particularly advantageous when the transmission is built in stages or when it works under de-icing mode. The simplest MTDC topology with the parallel converters located in the same station is the subject of this paper. The characteristics of four-terminal HVDC system with parallel converters are analyzed. A new cooperation strategy is proposed which rectifiers control dc current, inverters control dc voltage and a per-unit dc current balancing control function applied to avoid an unambiguous operating dc voltage. This cooperation strategy not only simplifies the control system design for the 4-terminal HVDC transmission, retains the independence of the two 2-terminal HVDC systems to the utmost extent, but also any proportion power distribution among the two inverters is achieved. De-paralleling the second converter and paralleling the first converter are of special interest for parallel operation, the methods of doing this are also described. Finally, a case of 4-terminal HVDC system with the special topology validates the control strategies using PSCAD/EMTDC.
具有特殊并联拓扑的多端直流输电系统控制策略
随着高压直流输电技术的发展,并联变流器越来越受到人们的关注。多端直流(MTDC)系统采用变流器并联的方式,在分段输电或除冰模式下工作时尤为有利。本文的主题是最简单的MTDC拓扑,其中并联变流器位于同一站。分析了带并联变流器的四端高压直流系统的特性。提出了一种由整流器控制直流电流,逆变器控制直流电压,并利用单位直流电流平衡控制功能来避免工作直流电压不明确的合作策略。这种合作策略不仅简化了4端高压直流输电的控制系统设计,最大限度地保留了两个2端高压直流系统的独立性,而且可以实现两个逆变器之间的任意比例配电。第二变换器的去并联和第一变换器的并行是对并行操作特别感兴趣的,并描述了这样做的方法。最后,以具有特殊拓扑结构的四端高压直流系统为例,验证了PSCAD/EMTDC控制策略的有效性。
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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