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Estimation of the Ageing Condition of Oil-Filled Transformers Based on the Oil Parameters Using a Novel Fuzzy Logic Algorithm

机译:基于油参数的新型模糊逻辑算法估计充油变压器的老化状态

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The condition of the transformer insulation determines the remaining life of the transformer. Over the transformer service life, both liquid and solid insulation undergoes a continuous aging process under electrical, chemical, mechanical and thermal stresses. The insulating liquid of a transformer can be reconditioned or replaced; however, this is not the case for the cellulose insulation. Therefore, the condition of the paper insulation is the major factor for determining the aging status of a transformer. To assess the paper condition, the common method is to measure the degree of polymerization (DP) of the paper insulation as a significant parameter. This method is destructive as it requires a sample of paper from inside of the transformer. Therefore, it could not be applied for transformers in operation. There are several approaches to approximate the DP value without direct measurements of paper samples. This research presents an improved method based on a fuzzy logic system for the estimation of the DP based on dissolved gases and chemical parameters of the liquid insulation. The algorithm is developed to create the rules for the use of fuzzy sets based on the information gain extracted by the entropy of the laboratory measurement data. This algorithm employs entropy to examine the sample homogeneity. Entropy is a measure of information theory that can determine the dataset characteristics concerning impurity and homogeneity. The algorithm uses fuzzy sets of oil parameters like Acidity, Interfacial Tension (IFT), Carbon Dioxide (CO_2) and Carbon Monoxide (CO) and the breakdown voltage (BDV) for determination of the DP value.
机译:变压器绝缘的状况决定了变压器的剩余寿命。在变压器的使用寿命中,液体和固体绝缘在电,化学,机械和热应力下都会经历连续的老化过程。变压器的绝缘液体可以修复或更换;但是,纤维素绝缘不是这种情况。因此,纸绝缘的状况是确定变压器老化状态的主要因素。为了评估纸的状态,常用的方法是将纸绝缘的聚合度(DP)作为重要参数进行测量。此方法具有破坏性,因为它需要从变压器内部抽取纸样。因此,它不适用于运行中的变压器。有几种方法可以在不直接测量纸样的情况下估算DP值。这项研究提出了一种基于模糊逻辑系统的改进方法,用于基于溶解气体和液体绝缘体的化学参数估算DP。开发该算法的目的是根据实验室测量数据的熵提取的信息增益来创建使用模糊集的规则。该算法利用熵检查样本的均匀性。熵是信息论的一种度量,可以确定有关杂质和同质性的数据集特征。该算法使用诸如酸度,界面张力(IFT),二氧化碳(CO_2)和一氧化碳(CO)和击穿电压(BDV)等油参数的模糊集来确定DP值。

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