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A Study of Electrical Aging of the Turn-to-Turn Oil-Paper Insulation in Transformers with a Step-Stress Method

机译:具有阶梯应力法的变压器转弯油纸绝缘电老化的研究

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摘要

This study investigates the electrical aging characteristics of oil-paper composite insulation. In this paper, a coils model and test system for oil-paper transformer insulation are designed. The electrical aging tests of the model coils at room temperature and operating temperature are performed using the step-stress method. A new method for estimating the unknown parameters in the inverse power exponent model is proposed, and the inverse power model life formula expressed by voltage and electric field strength is obtained. Considering the electrical aging process at the operating temperature, the allowable field strength of the inter-turn insulation of oil-immersed transformers can be improved. The new parameter estimation method proposed in this paper can be used to calculate the unknown parameters of the step-stress solid insulation aging model. This method has a clear physical meaning and can be solved easily. When the stressed voltage is below a certain threshold value, the life of the transformer coil turn-to-turn insulation grease oiled paper model is longer at operating temperatures compared with that at room temperature; when the voltage is higher than the threshold, it presents the opposite tendency.
机译:本研究调查了油纸复合绝缘材料的电老化特性。本文设计了一种线圈模型和油纸变压器绝缘测试系统。使用阶梯应力法进行室温和工作温度的模型线圈的电老化试验。提出了一种用于估计逆功率指数模型中未知参数的新方法,获得由电压和电场强度表示的反功率模型寿命公式。考虑到工作温度下的电动老化过程,可以提高油浸式变压器的变频间绝缘的允许场强度。本文提出的新参数估计方法可用于计算阶梯应力固体绝缘老化模型的未知参数。该方法具有清晰的物理意义,可以轻松解决。当压力电压低于一定的阈值时,变压器线圈转向转弯绝缘油油纸模型的寿命更长的工作温度与室温相比;当电压高于阈值时,它呈现相反的趋势。

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