Predictive frequency stability control based on wide-area phasor measurements

M. Larsson, C. Rehtanz
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引用次数: 70

Abstract

Wide-area phasor measurements provide a dynamic view of the power system in short-term intervals. The time synchronization and concentration of these measurements opens up a range for wide area applications for protection and control. For each kind of instability, related detection and action schemes can be defined to limit or prevent the system from severe disturbances or even collapses. This paper proposes a novel predictive method for emergency frequency control to be used on such occasions. The proposed method avoids the drawbacks of local underfrequency load shedding schemes, such as delayed response and overshedding, by basing control on synchronized phasor measurements. A single machine equivalent for each power system island including the frequency sensitivity of loads, is computed online using phasor measurements. Using this model the progression of frequency stability after a contingency is predicted and stabilizing load shedding is determined in a co-ordinated way for the supervised area of the power system.
基于广域相量测量的预测频率稳定控制
广域相量测量提供了短期内电力系统的动态视图。这些测量的时间同步和集中为保护和控制的广域应用开辟了一个范围。对于每一种不稳定,都可以定义相应的检测和行动方案,以限制或防止系统受到严重干扰甚至崩溃。本文提出了一种新的应急频率控制预测方法。该方法基于同步相量测量控制,避免了局部低频减载方案的延迟响应和过减等缺点。每个电力系统岛的单机等效,包括负载的频率灵敏度,使用相量测量在线计算。利用该模型,以协调的方式对电力系统监管区域的频率稳定性进行了预测,并确定了稳定减载。
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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