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Transformer Winding Modelling to Study the Effect of Inter-disk Faults on Frequency Response Signature

机译:变压器绕组模型研究磁盘磁盘故障对频率响应签名的影响

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摘要

Transformer units are one of the most significant equipment in power network and are integrated in all sectors of the grid. It is highly important to maintain a reliable operation of the transformer unit through timely diagnosis and inspection works. Frequency Response Analysis (FRA) is considered as quite efficient, non-destructive and well-standardized techniques for evaluation of mechanical conditions of the transformer. In this study, one of the most frequent fault type - inter-disk short circuit is emulated and its effect on FRA test results is analyzed. In order to realize this task, both practical and software FRA measurements are conducted on a transformer winding. Software modelling is based on a fabricated winding and a physical model is developed from the geometric and electrical properties of the winding. FRA results have showed identical anti-resonance frequencies and magnitudes for software simulated and practical measurements of frequency response. Furthermore, effect of internal short-circuit was investigated, resulting in magnitude decrease and anti-resonance shift according to amount of disks shorted. Developed software model of the winding can prospectively be used for online FRA application and further analysis of winding internal faults.
机译:变压器单元是电网中最重要的设备之一,并集成在网格的所有扇区中。通过及时的诊断和检查工作保持变压器单元的可靠运行非常重要。频率响应分析(FRA)被认为是具有用于评估变压器的机械条件的相当高效,无损和良好的标准化技术。在本研究中,仿真了最常用的故障类型型短路之一,并分析了对FRA测试结果的影响。为了实现这项任务,在变压器绕组上进行实际和软件FRA测量。软件建模基于制造的绕组,并且从绕组的几何和电气性能开发了物理模型。 FRA结果表明了具有频率响应的模拟和实际测量的软件的相同的防谐振频率和幅度。此外,研究了内部短路的效果,导致根据短路的磁盘量的幅度降低和反共振移位。开发的绕组软件模型可以潜在用于在线FRA应用以及进一步分析绕组内部故障。

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