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A robust differential protection technique for single core delta-hexagonal phase-shifting transformers

机译:单芯三角形六相移变压器的稳健差动保护技术

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This paper presents an advanced technique for the differential protection of single core phase shifting transformers. The proposed technique is based on sensing electrical signals without sensing tap position. Only terminals currents are sensed by using two current transformers (CTs) per phase unlike other methods that need more CTs. Other methods use at least four transducers per phase and, in addition, sense the tap changer position, which increases the cost of the protection system. The proposed technique is based on the analysis of magnetically coupled and metallically connected circuits. The excitation winding currents are calculated to represent input currents to the differential protection relay. Tap changer position is estimated according to the phase shift between sources currents. The technique is checked for various types of shunt faults inside and outside the protection zone. The results prove the relay sensitivity and stability for internal and external faults, respectively. The effects of inrush current, series winding and CTs saturation are taken into consideration.
机译:本文提出了一种用于单芯移相变压器的差动保护的先进技术。所提出的技术基于感测电信号而不感测抽头位置。与其他需要更多CT的方法不同,每相仅通过使用两个电流互感器(CT)感测端子电流。其他方法每相至少使用四个换能器,此外,还检测分接开关的位置,这增加了保护系统的成本。所提出的技术基于对磁耦合和金属连接的电路的分析。计算励磁绕组电流以代表到差动保护继电器的输入电流。分接开关位置根据电源电流之间的相移估算。检查该技术在保护区内外的各种类型的并联故障。结果证明了继电器对内部和外部故障的灵敏度和稳定性。考虑了浪涌电流,串联绕组和CT饱和的影响。

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