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A new approach of DGA interpretation technique for transformer fault diagnosis

机译:DGA解释技术在变压器故障诊断中的新方法

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Dissolved Gas Analysis (DGA) is one of the most common techniques to detect the incipient faults in the oil -filled power transformers. In this paper, a new approach of DGA technique is proposed to overcome the conflict that takes place in the traditional interpretation techniques for transformer fault diagnosis. The new approach is based on the analysis of 386 dissolved gas samples data set that collected from the Egyptian electric utility chemical laboratory as well as from credited literatures. These data sets are used to build the technique model and also as a tested data set to get the technique's accuracy. The new approach DGA diagnoses the transformer fault types based on the gas concentration percentage limit of the sum of main five gases (Hydrogen (H-2), Methane (CH4), Ethan (C2H6), Ethylene (C2H4), and Acetylene (C2H2)) and some suggested gases ratios depending on the sample data set analysis. The validation of the proposed approach of DGA technique is satisfied by comparing its results with the results of the IEC Standard Code, Duval triangle and Rogers methods for the collected data set. The results refer to the ability and reliability of the new approach in transformer faults diagnostic. (C) 2016 Elsevier Ltd. All rights reserved.
机译:溶解气体分析(DGA)是检测充油电力变压器中初期故障的最常用技术之一。本文提出了一种新的DGA技术方法,以克服传统解释技术在变压器故障诊断中所发生的冲突。新方法是基于对386种溶解气体样品数据集的分析,这些数据集是从埃及电力公用事业化学实验室以及著名文献中收集的。这些数据集可用于构建技术模型,也可作为经过测试的数据集来获得技术的准确性。新方法DGA根据主要五种气体(氢气(H-2),甲烷(CH4),乙烷(C2H6),乙烯(C2H4)和乙炔(C2H2)之和的气体浓度百分比极限来诊断变压器故障类型))和一些建议的气体比率,具体取决于样品数据集分析。通过将DGA技术的结果与收集的数据集的IEC标准代码,Duval三角和Rogers方法的结果进行比较,可以验证所提出DGA技术方法的有效性。结果表明该新方法在变压器故障诊断中的能力和可靠性。 (C)2016 Elsevier Ltd.保留所有权利。

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