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Prototype of a negative sequence turn-to-turn fault detection scheme for transformers

机译:变压器负序转向转圈故障检测方案的原型

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Summary form only given. Digital relays are capable of computing the negative sequence current on both primary and secondary sides of the transformer along with the phase difference between these two negative sequence currents. By using both phase and magnitude information, negative sequence current could be used to detect minor turn-to-turn faults involving 3% of the transformer's windings or more. Turn-to-turn faults may still occur even if no current is flowing on one side of the transformer, such as during energization. With no current flowing in the secondary windings of the transformer, negative sequence current based algorithms become insensitive. This paper introduces a relay prototype, using both negative sequence current and negative sequence voltage, which retains its sensitivity during energization. The relay's performance for several commonly encountered system scenarios such as over-excitation, current transformer saturation, non-zero fault resistance, transformer energization, and external faults were also examined. The experimental results presented in this paper indicate that the algorithm proposed in this paper is faster and more sensitive than restrained current differential protection and capable of detecting turn-to-turn faults occurring during transformer energization.
机译:摘要表格仅给出。数字继电器能够在变压器的两个主侧和次级侧和第二负序列电流之间的相位差中计算负序电流。通过使用两个相位和幅度信息,可以使用负序电流来检测涉及涉及互感器绕组的3%的轻微转弯故障。即使在变压器的一侧没有流动,例如在通电期间,也可能仍然发生转弯故障。没有电流在变压器的次级绕组中流动,负序列电流的算法变得不敏感。本文介绍了一种负序电流和负序电压的继电器原型,其在通电期间保持其灵敏度。还研究了继电器的几个常见系统场景,如过励磁,电流互感器饱和,非零故障,变压器通电和外部故障等多种常见的系统场景。本文提出的实验结果表明,本文提出的算法比抑制电流差动保护更快,更敏感,并且能够检测变压器通电期间发生的转弯故障。

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