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Protection and Commissioning of Multifunction Digital Transformer Relays at Medium Voltage Industrial Facilities

机译:中压工业设施的多功能数字变压器继电器的保护和调试

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The application of multifunction digital relays to protect medium voltage power transformers has become a common industrial practice. Industrial transformers, unlike utility transformers, frequently use neutral grounding resistors to limit ground current during faults to the 200-400 A level on medium voltage systems. This paper will discuss why these types of transformers require sensitive ground differential protection. The paper will also discuss the basics of transformer protection including: phasing standards, through-fault withstand capability, differential/fusing/overcurent rrent protection, slope, CT requirements, harmonic restraint, and communicating these properly to new digital relays. The rationale for providing transformer overexcitation protection on all major transformers within mill facilities is also addressed. Advancements in digital technology have allowed relay manufacturers to include more and more relay functions within a single hardware platform as well as address increasingly more transformer winding configurations. This has resulted in digital transformer relays requiring an Einstein to set and an Edison to commission. Since there are few Einsteins or Edisons among us, the next generation of transformer relays needs to concentrate on this complexity issue in addition to technical improvements. This paper addresses these issues that the author believes are the major shortcomings of existing digital transformer protective relays.
机译:多功能数字继电器用于保护中压电力变压器已成为一种常见的工业实践。与公用变压器不同,工业变压器经常使用中性点接地电阻器将故障期间的接地电流限制在中压系统的200-400 A级别。本文将讨论为什么这些类型的变压器需要灵敏的接地差动保护。本文还将讨论变压器保护的基础知识,包括:定相标准,直通故障承受能力,差分/熔断/过电流租金保护,斜率,CT要求,谐波抑制,以及将这些正确地传达给新的数字继电器。还讨论了在工厂设施内为所有主要变压器提供变压器过励磁保护的原理。数字技术的进步使继电器制造商可以在单个硬件平台中包括越来越多的继电器功能,并且可以解决越来越多的变压器绕组配置问题。这导致数字变压器继电器需要爱因斯坦进行设置,而爱迪生需要进行调试。由于我们中很少有爱因斯坦或爱迪生,因此除了技术上的改进之外,下一代变压器继电器还需要集中精力解决这一复杂性问题。本文针对这些问题,作者认为这是现有数字变压器保护继电器的主要缺点。

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