Study on mechanism and characteristics of HVDC system with the novel shunt capacitor commutated converters

Shubo Sun, Xin Sun, Zhiwen Zhang, C. Zhai, Song Li
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Abstract

The application of power electronics in HVDC systems inevitably lead to various power quality problems, such as harmonic pollution, reactive loss and commutation failure, etc. To solve these issues, this paper proposes a novel shunt capacitor commutated converters (SCCC) to figure them out. The topology can be described as follows, the shunt capacitors are installed at the altering current (ac) bus between the valve winding of converter transformers and the converters, it can replaces the conventional HVDC system with line commutated converters (LCC) where the harmonic filters and shunt capacitors are installed at the ac grid side. Firstly, the characteristics and operating mechanism of the new HVDC system with SCCC are analyzed, and then, the harmonic equivalent model is established. Moreover, the mathematical model for the SCCC-HVDC system is presented. The feasibility of the proposed new topology is validated by simulation results. It manifests that the shunt capacitors not only greatly absorbs the high-order harmonic but also eliminates the commutation angle μ absolutely, hence, the commutation ability can be enhanced greatly. Besides, it also presents good filtering and reactive power compensating performances to public networks.
新型并联电容器整流变流器在高压直流系统中的作用机理及特性研究
电力电子技术在高压直流输电系统中的应用不可避免地导致谐波污染、无功损耗和换相故障等各种电能质量问题。为了解决这些问题,本文提出了一种新型并联电容整流变换器(SCCC)。并联电容器安装在换流变压器阀绕组与变流器之间的交流电母线上,可以用线路换向变流器(LCC)代替传统的高压直流系统,其中谐波滤波器和并联电容器安装在交流电网侧。首先分析了带SCCC的新型高压直流系统的特点和运行机理,然后建立了谐波等效模型。此外,还建立了SCCC-HVDC系统的数学模型。仿真结果验证了新拓扑的可行性。结果表明,并联电容器不仅能极大地吸收高次谐波,而且能完全消除整流角μ,从而大大提高整流能力。此外,对公共网络也具有良好的滤波和无功补偿性能。
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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