用溶解气体分析程序改进变压器故障诊断的Duval三角

S. Desouky, A. Kalas, R. A. Abd El-Aal, A. M. M. Hassan
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引用次数: 11

摘要

油中溶解气体分析(DGA)是一种灵敏、可靠的油浸变压器早期故障状态检测技术。当矿物油受到高热或/和电应力时,它就会分解,从而产生气体。本文将Duval三角形DGA诊断图修改为数值方法,便于诊断,并可用于Matlab程序。对三组不同变压器的DGA数据进行了评价。开发了Matlab程序,实现了对杜瓦尔三角图的自动评估,并对其进行了数值修正。此外,变压器过励磁对油的分解会产生故障气体,导致变压器励磁电流增大,导致变压器铁心内温度升高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modification of Duval triangle for diagnostic transformer fault through a procedure of dissolved gases analysis
Dissolved gas-in-oil analysis (DGA) is a sensitive and reliable technique for the detection of incipient fault condition within oil-immersed transformers. When the mineral oil is subjected to high thermal or/and electrical stresses, it decomposes and, as a result, gases are generated. This paper presents modification of Duval triangle DGA diagnostic graph to numerical method that is easy to use for diagnosing and the possibility to use for a Matlab program. The evaluation is carried out on DGA data obtained from three different groups of transformers. A Matlab program was developed to automate the evaluation of Duval Triangle graph to numerical modification, Also the fault gases can be generated due to oil decomposing effected by transformer over excitation which increasing the transformer exciting current lead to rising the temperature inside transformer core beside the other causes.
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