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Condition assessment of main insulation in transformer by dielectric loss data interpolation method and database building

机译:介质损耗数据插值法评估变压器主绝缘状态及建立数据库

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Frequency Domain Spectroscopy (FDS) diagnostic technique is becoming more popular in recent years and is more suitable for onsite assessment. However, there are few reports about how to use FDS to assess the ageing condition of the oil-paper insulation conveniently. What's more, the lower frequency testing would be taken three or more hours. It's useful to reduce the testing time without effect the assessment result using new data processing method. In this paper, the oil impregnated insulation pressboard samples were thermally aged at 130°C for different times and then they were prepared for different moisture contents. The FDS measurements were taken on them and the dielectric loss of all the samples were calculated by dielectric loss interpolation. The ageing condition assessment database which contains five ageing levels and five moisture contents was built. When the dielectric loss interpolation curves of the oil impregnated insulation pressboard in a transformer mostly coincide with one curve or locate between two curves in the database, the main insulation ageing condition of the transformer is known. The evaluation method proposed is verified in this paper and the result shows that the dielectric loss interpolation method is dependable.
机译:频域光谱(FDS)诊断技术近年来变得越来越流行,并且更适合于现场评估。但是,关于如何使用FDS方便地评估油纸绝缘层的老化条件的报道很少。而且,较低频率的测试将花费三个小时或更长时间。使用新的数据处理方法来减少测试时间而不影响评估结果非常有用。在本文中,将含油绝缘压板样品在130°C下热老化不同的时间,然后针对不同的水分含量进行制备。对它们进行FDS测量,并通过介电损耗内插法计算所有样品的介电损耗。建立了包含五个老化水平和五个水分含量的老化条件评估数据库。当变压器中浸油绝缘压板的介电损耗内插曲线与数据库中的一条曲线基本重合或位于两条曲线之间时,就可以知道变压器的主要绝缘老化条件。本文对所提出的评估方法进行了验证,结果表明介电损耗插值方法是可靠的。

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