A fundamental study on the impact of HVDC lines on transient stability of power systems

L. Sigrist, F. Echavarren, L. Rouco, P. Panciatici
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引用次数: 19

Abstract

An increasing number of HVDC lines are currently deployed all around the world. HVDC links are either based on line-commutated converters (LCC) or on voltage-source converters (VSC) technologies. This paper presents a fundamental study on the impact of HVDC links on the transient stability of power systems. Both, VSC and LCC HVDC links have been studied when applied to a two-area power system. Particular attention has been paid to the critical clearing time (CCT). It has been found that HVDC links generally improve transient stability by increasing the critical clearing time with respect to the case without HVDC link. Moreover, the impact on transient stability significantly depends on the supervisory control strategies applied to the LCCs and VSCs of the HVDC links. An inappropriate handling of current limits of VSC by reducing either active or reactive power can worsen transient stability.
高压直流线路对电力系统暂态稳定影响的基础研究
目前,世界各地部署的高压直流输电线路越来越多。高压直流链路要么基于线路换向转换器(LCC),要么基于电压源转换器(VSC)技术。本文对高压直流输电线路对电力系统暂态稳定的影响进行了基础性研究。研究了VSC和LCC两种高压直流线路在两区电力系统中的应用。关键清算时间(CCT)受到了特别的关注。研究发现,与无高压直流输电相比,高压直流输电通常通过增加临界清除时间来改善暂态稳定性。此外,对暂态稳定性的影响很大程度上取决于应用于HVDC链路的lcc和vsc的监控策略。通过降低有功或无功功率来不适当地处理VSC的电流限制会使暂态稳定性恶化。
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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