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Lessons learned from generator tripping events at industrial facilities

机译:从工业设施的发电机跳闸事件中学到的教训

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This paper relates a number of generator tripping events that occurred within industrial plants in the hope that the ¿lessons learned¿ will help others avoid the events described. In many cases, these failures involved human errors and could have been avoided with proper generator protection or personnel training. In a number of cases, plant operators contributed or caused the events. These events were captured on oscillographs. The paper discusses the subtleties of analyzing generator non-fault events such as loss-of-field as well as the important role that sequence of event and oscillographic records play in analyzing these events. The paper also discusses the need to change the established practice of low-resistance grounding (200-400 A) of medium voltage industrial generators. In-service failures indicate the need to limit generator ground current to much lower levels to avoid catastrophic damage. The use of hybrid generator grounding is proposed as a solution to this problem.
机译:本文介绍了一些在工厂内发生的发电机跳闸事件,希望所学的经验教训可以帮助其他人避免所描述的事件。在许多情况下,这些故障涉及人为错误,可以通过适当的发电机保护或人员培训来避免。在许多情况下,工厂运营商促成或造成了事件。这些事件是在示波器上捕获的。本文讨论了分析发电机非故障事件(例如,磁场损失)的精妙之处,以及事件序列和示波器记录在分析这些事件中的重要作用。本文还讨论了改变中压工业发电机低电阻接地(200-400 A)的既定做法的必要性。使用中的故障表明需要将发电机接地电流限制在更低的水平,以避免灾难性损坏。提出使用混合发电机接地作为该问题的解决方案。

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