Energization and regulation of a hybrid HVDC grid with LCC and VSC

M. H. Naushath, A. Rajapakse, A. Gole, I. Fernando
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引用次数: 11

Abstract

A novel hybrid HVDC grid configuration consisting of line commutated converters (LCCs) and voltage source converters (VSCs) is investigated in this paper. The proposed hybrid HVDC grid can be used to deliver power to intermediate urban/remote load centers or collect power from remote/renewable generation at sites along a long LCC transmission line. An electromagnetic transients (EMT) simulation model of a four terminal HVDC grid was developed together with master controls required to maintain the desired power flow. Two possible operating modes were investigated. In the first mode, two VSCs tap into an LCC HVDC link. In the second mode, two VSCs share the surplus transmission capacity of an LCC HVDC line for point-to-point power transfer. Control strategies to start-up the converter stations, energize the grid, and controls to achieve the desired power flow between converter stations are proposed. With the proposed controls and energization sequence, smooth operation of the whole grid could be achieved for both modes of operation.
LCC和VSC混合高压直流电网的通电与调节
本文研究了一种由线路换流变换器(lcc)和电压源变换器(VSCs)组成的新型混合高压直流电网结构。拟议的混合HVDC电网可用于向中间城市/远程负载中心输送电力,或沿着LCC长传输线从远程/可再生发电站点收集电力。建立了四端高压直流电网的电磁瞬变(EMT)仿真模型,并建立了维持所需功率流的主控制器。研究了两种可能的工作模式。在第一种模式下,两个vsc接入LCC高压直流链路。在第二种模式下,两个vsc共享LCC高压直流线路的剩余输电容量,用于点对点输电。提出了启动换流站、给电网通电的控制策略,以及实现换流站间所需潮流的控制策略。通过所提出的控制和通电顺序,可以实现两种运行模式下整个电网的平稳运行。
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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