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A Novel Method of Fault Prediction in Transformer Oil using Infrared Spectroscopy

机译:红外光谱法预测变压器油故障的新方法

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Dissolved gas analysis (DGA) is the most widely used technique for predicting incipient faults in transformer oil. In order to perform DGA, the concentration of dissolved gases such as Methane (CH4), Ethylene (C2H4) and Acetylene (C2H2) are required. The concentration of these gases can be determined by means of Gas Chromatography (GC) which is the most globally used technique. However, this technique requires an experienced operator, has high maintenance and running costs, and time consuming as well. In view of these issues, a new method of fault prediction is proposed in this paper that makes use of the absorption phenomena of transformer oil. Fourier Transform Infrared (FTIR) Spectroscopy was performed on oil samples that have been degraded due to the accumulative and repetitive impact of high voltage impulses. The FTIR spectra gave the peak absorbance values of the dissolved gases viz; CH4, C2H4 and C2H2. Finally, the Duval triangle method was implemented for fault prediction. Also, other properties of oil such as breakdown voltage and dielectric constant have also been evaluated.
机译:溶解气体分析(DGA)是预测变压器油中初期故障的最广泛使用的技术。为了执行DGA,溶解气体的浓度如甲烷(CH 4 ),乙烯(C 2 H 4 )和乙炔(C 2 H 2 ) 是必须的。这些气体的浓度可以通过气相色谱法(GC)确定,这是全球使用最广泛的技术。但是,该技术需要经验丰富的操作员,维护和运行成本较高,并且也很费时间。针对这些问题,提出了一种利用变压器油吸收现象的故障预测新方法。对由于高压脉冲的累积和重复影响而退化的油样进行了傅里叶变换红外(FTIR)光谱分析。 FTIR光谱给出了溶解气体的峰值吸收值。 CH 4 , C 2 H 4 和C 2 H 2 。最后,采用杜瓦尔三角法进行故障预测。另外,还评估了油的其他特性,例如击穿电压和介电常数。

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