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Countermeasure to Prevent the Incorrect Blocking of Differential Protection Applied to Converter Transformers

机译:防止差动保护堵塞适用于转换器变压器的对策

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摘要

Harmonic blocking is usually applied by converter transformer differential protection to prevent protection mal-operation during an inrush condition, but it may incorrectly block the protection during an internal fault. This paper first makes an in-depth analysis on factors that lead to differential protection failure to trip for converter transformer internal faults. The main factor responsible for the protection failure to trip is half-cycle saturation of the converter transformer core, which results from the dc component in the fault current. This suggests that harmonic blocking may not be suitable for differential protection of converter transformers to identify inrush conditions. In this regard, this paper proposes a novel method using mathematical morphology to effectively discriminate between the conditions caused by inrush and internal faults. This method implements the waveform symmetry criterion and improved morphological gradient criterion to distinguish between these two conditions. The effectiveness of the proposed method is evaluated based on extensive simulation, and the presented results show that the proposed method can ensure operation for all types of internal faults. Additionally, this method improves the accuracy of inrush identification, even in extreme cases, such as sympathetic inrush and inrush with current transformer saturation.
机译:谐波堵塞通常通过转换器变压器差动保护应用,以防止在浪涌状态期间防护不正确,但它可能在内部故障期间错误地阻止保护。本文首先对转换器变压器内部故障进行差动保护失败的因素进行了深入的分析。负责保护失败跳闸的主要因素是转换器变压器核心的半周期饱和,这是由故障电流中的DC分量导致的。这表明谐波阻塞可能不适用于转换器变压器的差分保护以识别浪涌条件。在这方面,本文提出了一种使用数学形态学的新方法,以有效地区分涌入和内部故障引起的条件。该方法实现波形对称标准,改进的形态梯度标准以区分这两个条件。基于广泛的模拟评估所提出的方法的有效性,并且所提出的结果表明,该方法可以确保所有类型的内部故障操作。另外,这种方法即使在极端情况下,这种方法也提高了涌入识别的准确性,例如具有电流变压器饱和的交感神经浪涌和浪涌。

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