VSC高压直流输电走廊:光伏发电和交流网络稳定支持的一种选择

A. Nnachi, J. Munda, D. Nicolae, A. M. Mabwe
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引用次数: 8

摘要

日益增长的电力需求和供应不平等的压力迫使公用事业公司将交流系统互连以满足需求。随着高压直流(HVDC)方案在全球互联电力系统中的广泛应用,它正成为一种越来越有吸引力的解决方案。本文研究了基于电压源变换器的高压直流输电走廊在光伏发电和交流网络稳定支持中的作用。介绍了纳米比亚caprivii -link互连器的概况:一个案例研究,非常大规模的光伏发电在纳米比亚的潜力以及在DC-link上光伏发电的前景。在Matlab/Simulink中对系统进行了建模仿真。关键突发事件,如突发孤岛条件,三相接地故障,模拟有和没有光伏渗透。结果表明,在直流链路上光伏发电对交流侧电网的稳定性提供了支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
VSC HVDC transmission corridor: An option for PV power injection and AC network stability support
The pressure of increasing power demand and supply inequality is forcing utilities to interconnect AC systems to meet demands. High Voltage Direct Current (HVDC) schemes are becoming a more attractive solution as they have been used extensively in interconnected power systems worldwide. This paper investigates the role of voltage source converter (VSC) based HVDC transmission corridor for PV power injection and for AC network stability support. Overview of Namibia Caprivi-link interconnector a case study, potential of very large scale PV in Namibia and prospects of PV power injection on the DC-link is presented. The system is modelled simulated in Matlab/Simulink. Critical contingencies such as sudden island conditions, three-phase to ground fault are simulated with and without PV penetration. Results show the stability support on the AC side networks by PV power injection on the dc-link.
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