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Internal Fault Analysis in Disk-Type Transformer Winding Using Network Reduction

机译:基于网络简化的磁盘式变压器绕组内部故障分析

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Internal winding faults are the most common cause of failure in power transformers. The complicated electrical and geometrical configuration of transformers makes it difficult to produce models able to predict their behavior under transient conditions in an accurate and efficient manner. Internal fault analysis of windings requires a detailed (turn-by-turn) modeling approach that results in very large systems that can be difficult to define and computationally expensive. In addition, in many cases the fault analysis does not require from measurements at all turns, but only at the turns related to the fault condition. The purpose of this work is to describe a modeling approach for internal fault analysis of transformer windings using a frequency domain approach in combination with Kron's network reduction to preserve only the nodes of particular interest, and the numerical inverse Laplace transform to obtain the transient response of the system in the time domain. A prototype transformer winding with 2000 turns is used for this purpose. Comparisons between the open and short circuit faults for the complete network system and the equivalent reduced network provide the same results considering a very small portion of the original system's size.
机译:内部绕组故障是电力变压器故障的最常见原因。变压器的复杂电气和几何构造使其难以生成能够准确,有效地预测瞬态条件下其行为的模型。绕组的内部故障分析需要详细的(逐匝)建模方法,这会导致非常庞大的系统,难以定义且计算量大。另外,在许多情况下,故障分析不需要始终进行测量,而仅需要进行与故障条件有关的匝数分析。这项工作的目的是描述一种用于变压器绕组内部故障分析的建模方法,该方法使用频域方法与Kron的网络约简相结合以仅保留特别感兴趣的节点,并进行数值拉普拉斯逆变换来获得变压器的瞬态响应。时域中的系统。为此,使用具有2000匝的原型变压器绕组。考虑到原始系统规模很小的一部分,对于整个网络系统和等效的简化网络的开路和短路故障之间的比较提供了相同的结果。

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