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A variable data-window phaselet transformer differential protection algorithm based on recursive least square theory

机译:基于递推最小二乘理论的可变数据窗小波变压器差动保护算法

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With the application of high and extra-high voltage transformer, traditional differential protection algorithm based on half period data window will possess a switching interval of 30ms or even longer, which could hardly satisfy the quickness of protective relaying. When external fault occurs, inceptive fault transient component, inrush current, CT saturation, and harmonics would amplify the unbalance current, which easily bring about the malfunction of differential protection. This paper proposes an algorithm which based on recursive least square theory, and combine with variable data window phaselet algorithm to improve transformer differential protection. This least square based method is adaptive, and modulate the length of data window dynamically, and is accompanied by the continuous outlet frequency judgment, in order to ensure the correctness in the interferences of inrush current and inner fault. Simulation shows that algorithm is able to boost the reliability and sensitivity of transformer differential protection, and is significantly practicable than traditional methods.
机译:随着高压变压器和超高压变压器的应用,传统的基于半周期数据窗口的差动保护算法将具有30ms甚至更长的切换间隔,难以满足保护继电的快速性。当发生外部故障时,故障瞬态分量,浪涌电流,CT饱和和谐波会放大不平衡电流,从而很容易引起差动保护的故障。提出了一种基于递推最小二乘理论的算法,并结合可变数据窗小波算法来改善变压器的差动保护。这种基于最小二乘的方法是自适应的,可以动态地调制数据窗口的长度,并伴随连续的出口频率判断,以确保浪涌电流和内部故障的干扰的正确性。仿真表明,该算法能够提高变压器差动保护的可靠性和灵敏度,与传统方法相比具有明显的实用性。

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