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A Design Guide to Neutral Grounding of Industrial Power Systems: The Pros and Cons of Various Methods

机译:工业电源系统中性点接地设计指南:各种方法的优缺点

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摘要

Neutral grounding of industrial power systems has always been a controversial topic. Historically, systems with ungrounded neutral were dominant because of the service continuity with a ground fault on the system. This resulted in high system availability because there was no need to trip after the first ground-fault inception. However, as industrial power systems became more complex, transient overvoltage during a ground fault became more severe, making ungrounded-neutral systems less attractive. On the contrary, the ability of grounded-neutral systems to limit overvoltages made them more popular. Over time, ungrounded systems in North America started to disappear, except legacy systems, and almost all new industrial systems are designed with grounded neutral. With myriad grounding methods, the question is which is the most appropriate method to use? Each method has its pros and cons, making the choice of the appropriate one dependent on the application. For each grounding method, this article presents a brief description of selection criteria used for evaluation and their pros and cons.
机译:工业电源系统的中性接地一直是一个有争议的话题。从历史上看,具有中性点不接地的系统是占主导地位的,因为该服务具有系统故障,并且具有接地故障。这导致了高系统可用性,因为在第一次接地故障发生后就无需跳闸。但是,随着工业电源系统变得越来越复杂,接地故障期间的瞬态过电压也变得更加严重,使得不接地的零线系统吸引力下降。相反,中性点接地系统限制过电压的能力使它们变得越来越流行。随着时间的流逝,北美的不接地系统开始消失,除了旧有系统外,几乎所有新的工业系统都设计为接地中性线。对于多种接地方法,问题是哪种方法最适合使用?每种方法都有其优缺点,因此要根据应用程序选择合适的方法。对于每种接地方法,本文都会简要介绍用于评估的选择标准及其优缺点。

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