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Why wait? System-wide benefits from custom overcurrent relay characteristics

机译:为什么要等?定制过流继电器特性可为全系统带来好处

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Various types of numerical protective relays allow the user to specify a custom overcurrent protection characteristic. For most end users this feature is simply a curiosity or completely ignored, an untapped capability of the device. Other users apply a custom curve shape in isolated cases to solve difficult coordination problems. This is rather unfortunate because the precise tripping control that can be obtained from a user-defined custom curve offers many advantages over traditional inverse curve shapes. Some of these benefits include increased safety to personnel, improved equipment protection, better handling of impact loads, and enhanced selectivity at bolted and arcing fault current levels. This paper provides specific power system examples that demonstrate the benefits of replacing electromechanical relay replications in favor of custom curve shaping obtained from numerical relays in applications starting from the incoming substation down to the unit substations and motor controllers. These samples will show how the user can specify tripping characteristics to reduce the available arc-flash energy to protect workers and equipment. They will illustrate how sudden increased loading can be accommodated to allow for a load shedding system to operate. The paper will also offer lessons learned and suggestions for future development of this custom programming feature of numerical relays.
机译:各种类型的数字保护继电器允许用户指定自定义的过电流保护特性。对于大多数最终用户而言,此功能只是出于好奇或完全被忽略,是该设备尚未开发的功能。其他用户在孤立的情况下应用自定义曲线形状来解决困难的协调问题。这是很不幸的,因为可以从用户定义的自定义曲线获得精确的跳闸控制,这比传统的反曲线形状具有许多优势。其中的一些好处包括提高人员安全性,改善设备保护,更好地处理冲击载荷以及在螺栓和电弧故障电流水平下提高选择性。本文提供了特定的电源系统示例,这些示例演示了替换机电继电器复制品的好处,从而有利于从应用程序中的数字继电器获得定制曲线整形,这些应用程序从输入变电站到单元变电站和电动机控制器。这些样本将说明用户如何指定跳闸特性,以减少可用的弧闪能量,以保护工人和设备。他们将说明如何适应突然增加的负载以允许减载系统运行。本文还将提供经验教训,并为数字继电器的这种自定义编程功能的未来发展提供建议。

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