Maximizing power system stability through wide area protection

D. Karlsson, L. Broski, S. Ganesan
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引用次数: 24

Abstract

This paper describes basic principles and purpose for applying wide area protection schemes, also known as remedial action schemes (RAS) or system protection schemes (SPS). In the areas of power system automation and substation automation, there are two different trends: centralization and decentralization. More and more dynamic functions are moving from local and regional control centers towards central or national control centers. At the same time we also observe more "intelligence" and "decision-power" moving closer towards the actual power system substations. Greater functional integration is being enclosed in substation hardware. This raises discussions concerning reliability (security and dependability). The main targets for this paper are to: (1) sort out the terminology used in this area; (2) describe different application areas and related requirements; (3) illustrate different design principles - "top-down", "bottom-up", hierarchy, flat, etc., for different applications; (4) identify similarities and differences between classic equipment protection and system protection -concerning philosophy as well as concerning product and system design; and (5) show the value of wide area protection; (6) illustrate the great breakthrough for wide area protection, since the introduction of synchronized phasor measurements, based on PMUs (phasor measurement units).
通过广域保护最大化电力系统稳定性
本文介绍了应用广域保护方案的基本原则和目的,也称为补救行动方案(RAS)或系统保护方案(SPS)。在电力系统自动化和变电站自动化领域,出现了集中式和分散式两种不同的趋势。越来越多的动态功能正从地方和区域控制中心向中央或国家控制中心转移。与此同时,我们也看到更多的“智能”和“决策权”向实际的电力系统变电站靠拢。更大的功能集成被封装在变电站硬件中。这引发了关于可靠性(安全性和可靠性)的讨论。本文的主要目标是:(1)对该领域的术语进行梳理;(2)描述不同的应用领域和相关要求;(3)针对不同的应用,阐明不同的设计原则——“自顶向下”、“自底向上”、分层、扁平化等;(4)识别经典设备保护与系统保护在理念、产品和系统设计上的异同;(5)表示广域保护值;(6)说明了广域保护的巨大突破,自引入基于pmu(相量测量单元)的同步相量测量以来。
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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