Real-time method to prevent voltage collapse and power instability of HVDC systems

W. Kuehn
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引用次数: 9

Abstract

As HVDC transmission is increasingly used in electric power grids its influence on overall voltage and power stability is under special focus. For the classic HVDC system using current sourced line-commutated converters voltage and power stability is of concern. For the light type of HVDC systems utilizing voltage sourced self-commuting converters voltage stability is in general no problem, however, transmission angle stability and, connected to this, power stability can be crucial. Essential for both types of HVDC system is the identification of unstable operating regions and their avoidance. Certain off-line analytical methods and on-line control concepts exist but they do not provide complete security. This paper demonstrates that a real-time stability analyzer and an adaptive power controller free the system from this risk of voltage and power instability. Voltage and power are stabilized at a maximum transferable power level.
防止高压直流系统电压崩溃和电力不稳定的实时方法
随着高压直流输电在电网中的应用越来越广泛,其对电网整体电压和电力稳定的影响受到了人们的特别关注。对于采用电流源换向变换器的经典高压直流系统,电压和功率稳定性是人们关注的问题。对于使用电压源自交换转换器的轻型HVDC系统,电压稳定性通常没有问题,然而,传输角稳定性以及与之相关的功率稳定性可能至关重要。这两种类型的高压直流系统的关键是不稳定运行区域的识别和避免。存在一些离线分析方法和在线控制概念,但它们不能提供完全的安全性。本文论证了实时稳定性分析仪和自适应功率控制器使系统免于电压和功率不稳定的风险。电压和功率稳定在最大可转移功率水平。
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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