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A Setting-Free Differential Protection for Power Transformers Based on Second Central Moment

机译:基于第二中心时刻的电力变压器的无设定差动保护

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This paper describes a differential algorithm for the protection of a three-phase transformer to differentiate transient phenomena, such as inrush currents and external faults from solid and turn-to-turn faults. This algorithm is based on the behavior of the second central moment (SCM) to identify the kind of event. Instantaneous differential currents are used as input signals to the algorithm once they are filtered and normalized. The algorithm compares the magnitude of the SCM with an established threshold based on the binomial distribution to achieve a successful identification of the event. If the magnitude of the SCM is above the limit, the algorithm identifies the event as a fault condition. Otherwise, the event is determined as a transient event or a steady-state condition. The threshold is setting-free if the transformer parameters are changed or if the harmonic content of the differential current varies. Also, the threshold does not have to be recalculated if the power system is modified. The D index was introduced to improve the fault-detection time when the current transformers experience saturation. This index uses the magnitude of the SCM as a basis and is compared with an established limit to detect the fault current. Both indices run in parallel, and if any of them does cross its respective threshold, a fault condition is determined. The algorithm is tested in a real-time digital simulator and is implemented inMATLAB. The algorithm was compared against the conventional differential protection with harmonic restraint to evaluate the performance of both indices in critical conditions. The results validate the performance of the algorithm and indicate that it can be the basis of a new algorithm to protect power transformers.
机译:本文介绍了一种用于保护三相变压器以区分瞬态现象的差分算法,例如浪涌电流和来自固体和转弯故障的外部故障。该算法基于第二中心时刻(SCM)的行为来识别事件的类型。一旦过滤并归一化,瞬时差分电流用作算法的输入信号。该算法基于二项式分布将SCM的大小与已建立的阈值进行比较,以实现事件的成功识别。如果SCM的幅度高于限制,则算法将该事件识别为故障状况。否则,事件被确定为瞬态事件或稳态条件。如果变压器参数改变或者差分电流的谐波含量变化,则阈值是无置的。而且,如果修改电力系统,则不必重新计算阈值。引入D指数以改善当前变压器经历饱和时的故障检测时间。该索引使用SCM的幅度作为基础,并与既定限制进行比较以检测故障电流。两个索引并行运行,如果它们中的任何一个交叉其相应的阈值,则确定故障条件。该算法在实时数字模拟器中进行了测试,并实现Inmatlab。将该算法与谐波约束的传统差分保护进行了比较,以评估临界条件下的两个指标的性能。结果验证了算法的性能,并表明它可以是保护电力变压器的新算法的基础。

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