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Transformer differential protection with phase angle difference based inrush restraint

机译:基于相角差的浪涌抑制器的变压器差动保护

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A new technique for blocking the operation of the transformer differential relay when subjected to magnetizing inrush current is presented in this paper. The relay differential and restraint currents are calculated first, and the fundamental-frequency components of the two currents are then compared to identify the phase angle difference (PAD) between the corresponding transformer primary and secondary currents. Distinguishing the magnetizing inrush current from an internal fault current is accomplished by the presence of more than 90~° phase shift between the two currents during internal faults, and the absence of this in the case of magnetizing inrush and unfaulted transformer currents. This technique is investigated using an EMTP-RV simulation based model of a typical 3-phase 2-winding power transformer embedded in a power system fed from both ends. Results have confirmed that the PAD principle is capable of categorizing transformer operating modes within a cycle of the power system frequency. Also, the relaying decision is unaffected by current transformer (CT) saturation effects.
机译:提出了一种在励磁涌流中阻止变压器差动继电器动作的新技术。首先计算继电器的差动电流和抑制电流,然后比较这两个电流的基频分量,以识别相应的变压器一次和二次电流之间的相角差(PAD)。通过内部故障期间两个电流之间存在超过90°°的相移来实现将励磁涌流与内部故障电流区分开,而在励磁涌流和无故障变压器电流的情况下则不存在这种情况。使用基于EMTP-RV仿真的模型对这种技术进行研究,该模型是将典型的三相2绕组电力变压器嵌入到两端馈电的电力系统中。结果已经证实,PAD原理能够对电力系统频率周期内的变压器工作模式进行分类。同样,继电器的决定不受电流互感器(CT)饱和效应的影响。

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