Reliability considerations of multifunction protection

G. Johnson
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引用次数: 16

Abstract

Most electric utilities have embraced numeric multifunction protection technology as a means of surviving in an industry that has changed dramatically in the last ten years. Led by restructuring and shrinking resources, protection engineers are continuing the move to communicating, multifunction protection technology as a means of reducing cost and maintaining operating performance with fewer personnel. We are at a point in the evolution of the technology where we need to step back and ask some questions about protection reliability. Our application and maintenance philosophies must be reviewed on a regular basis to ensure that they are meeting long-term protection reliability as well today as they did with predecessor technologies such as electromechanical and solid state devices. The purpose of this paper is to evaluate the reliability of numerical multifunction protection systems against predecessor technologies. We define reliability as related to protective relaying, identify a selected group of reliability factors that impact both predecessor and numerical multifunction technologies, discuss each factor in detail, and draw conclusions about the overall reliability of multifunction protection.
多功能保护的可靠性考虑
大多数电力公司都采用数字多功能保护技术,作为在过去十年中发生巨大变化的行业中生存的一种手段。在重组和资源缩减的引导下,保护工程师正在继续转向通信、多功能保护技术,以减少人员数量,降低成本并保持运行性能。我们正处于技术发展的一个阶段,我们需要退后一步,问一些关于保护可靠性的问题。我们的应用和维护理念必须定期进行审查,以确保它们能够满足长期保护可靠性,以及今天它们与机电和固态设备等前身技术一样。本文的目的是评估数值多功能保护系统相对于前人技术的可靠性。我们将可靠性定义为与继电保护相关,确定了一组选定的影响前代和数字多功能技术的可靠性因素,详细讨论了每个因素,并得出了关于多功能保护总体可靠性的结论。
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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