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Alternative approaches and dynamic analysis considerations for detecting open phase conductors in three phase power systems

机译:用于检测三相电力系统中断相导体的替代方法和动态分析注意事项

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摘要

Open phase conductors in three-phase power systems can be difficult to detect with conventional protection relay schemes. Such events can have adverse consequences to power system equipment reliability and performance. The resultant voltage unbalance associated with open phase events can cause excessive heating in transformer core and coil assemblies and tanks, reduce the available starting and running torque of motors, increase motor acceleration time, cause inadvertent tripping of critical loads, and thermally damage plant equipment.Power system response to an open phase condition is highly dependent on a number of factors, including the type of open phase condition (events involving one or two phase conductors, coupled with or without a ground), the location of the open phase, the topology of the power system, transformer core design and winding connections, and type and magnitude of system loading.This paper briefly describes industry operating experience with open phase events. It summarizes the various alternative approaches for detecting open phase conductors on large station service transformers. Dynamic modeling considerations and techniques are described and a summary of analytical results which convey the challenges, advantages, and disadvantages associated with different detection strategies are presented. The role symmetrical components and sequence components can play in understanding the impact of open phase conditions on power system equipment also is discussed.
机译:常规保护继电器方案可能很难检测到三相电力系统中的断相导体。此类事件可能会对电源系统设备的可靠性和性能产生不利影响。与断相事件相关的结果电压不平衡会导致变压器铁芯,线圈组件和储罐中的过热,降低电动机的可用启动和运行扭矩,增加电动机加速时间,导致关键负载的意外跳闸,并热损坏工厂设备。电力系统对缺相条件的响应高度依赖于许多因素,包括缺相条件的类型(涉及一或两相导体,接地或不接地的事件),缺相的位置,拓扑有关电源系统,变压器铁芯设计和绕组连接以及系统负载的类型和大小的信息,本文简要介绍了缺相事件的行业运营经验。它总结了用于检测大型车站服务变压器上的断相导体的各种替代方法。描述了动态建模的注意事项和技术,并给出了分析结果的摘要,这些分析结果传达了与不同检测策略相关的挑战,优点和缺点。还讨论了对称组件和顺序组件在理解缺相条件对电力系统设备的影响中所起的作用。

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