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A new inrush detection algorithm for transformer differential protection

机译:一种新型浪涌检测算法,用于变压器差动保护

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Some power transformers, especially new designs with the core material improved for lower losses, produce low levels of second harmonic in their inrush magnetizing currents. Transformer differential relays face security problems when the second harmonic falls below the traditional 15 or 20 percent setting level. This paper derives a new protection method for detecting inrush conditions. The new algorithm is based on dwell-time periods in the inrush current. In each power cycle of a true inrush current, a period occurs where the differential current is both small and flat (dwell time). The new algorithm combines the absolute values of the instantaneous differential current with the absolute values of the differential current derivative to positively confirm both the low level and the flatness of the dwell-time currents. By utilizing the “flatness” feature of the waveshape, the algorithm performs well even under current transformer (CT) saturation. The new algorithm incorporates a separate method to cancel the inrush inhibit signal, allowing very fast operation for internal faults, particularly during inrush conditions. This dedicated element is based on a bidirectional instantaneous overcurrent principle.
机译:一些电力变压器,尤其是具有核心材料的新设计,改善了较低损耗,在其涌入磁化电流中产生低水平的二次谐波。当第二次谐波低于传统的15或20%的设定水平时,变压器差动继电器面部安全问题。本文源于一种用于检测涌入条件的新保护方法。新算法基于浪涌电流中的停留时间段。在真正浪涌电流的每个功率周期中,发生差分电流既小且扁平(停留时间)的时期发生时段。新算法将瞬时差分电流的绝对值与差分电流导数的绝对值相结合,以肯定地确认停留时间电流的低电平和平坦度。通过利用波浪叶片的“平坦度”特征,即使在电流互感器(CT)饱和度下,算法也表现良好。新算法包含一个单独的方法来取消涌入抑制信号,允许内部故障的非常快速的操作,特别是在浪涌条件下。该专用元件基于双向瞬时过电流原理。

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