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Interface charge polarity effect based analysis model for electric field in oil-pressboard insulation under DC voltage

机译:基于界面电荷极性效应的直流电压下油压绝缘子电场分析模型

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摘要

The Resistive-Capacitive (RC) model has been widely adopted for analysis of the electric field in oil-pressboard insulation under DC voltage. However, studies in this regard have indicated that the charge polarity effect in oil-pressboard insulation, namely the stronger adsorption of negative charges by pressboard, could not be adequately captured by the RC model. In order to analyze the electric field with due consideration of charge polarity effect, the present paper adopted the Kerr electro-optic techniques to have measured the electric field in the oil spacing under DC voltage for two experiments models with Model I having two oil spacing divided by a pressboard at the spacing ratio of 1:1, and the Model II at the spacing ratio of 1:2. As Model I is concerned, the strength of electric field in the upper oil spacing reached 1.61 times of the initial one under positive voltage and 1.60 times under negative voltage, while the field in the lower oil spacing registered as one eighth of the initial one under both positive and negative voltages. For Model II, the electric field strength in the upper oil spacing reached 2.3 times of the initial field under positive voltage and one fourth of that under negative voltage, showing much stronger charge polarity effect compared to that in Model I. In order to analyze the effect of interface charge on electric field, an electric field analysis model based on interface charge, named Interface Charge Polarity Effect (ICPE) Model, is proposed in this paper. Referring to the different adhesive abilities of positive and negative charges on pressboard, the influence of interface charge on electric field can be analyzed by the proposed model, which could make the contribution to the insulating design and proofread for the converter transformer.
机译:电阻电容(RC)模型已被广泛用于分析直流电压下油压板绝缘中的电场。但是,这方面的研究表明,RC模型无法充分捕获油压板绝缘中的电荷极性效应,即压板更强地吸附负电荷。为了在适当考虑电荷极性影响的情况下分析电场,本文采用Kerr电光技术对两个电压模型分别为I的两个实验模型在直流电压下测量了油间隙中的电场压板以1:1的间距比,而Model II则以1:2的间距比。就模型I而言,在正电压下,上部油层的电场强度达到初始电场的1.61倍,在负电压下,电场强度达到1.60倍,而下部油层的电场强度达到初始油层的八分之一。正电压和负电压都可以。对于模型II,在正电压下,上部油层的电场强度达到初始电场的2.3倍,在负电压下,电场强度达到初始电场的四分之一,与模型I相比,其电荷极性效应要强得多。提出了界面电荷对电场的影响,提出了一种基于界面电荷的电场分析模型,称为界面电荷极性效应模型。参照正负电荷在压板上的不同吸附能力,可以通过提出的模型来分析界面电荷对电场的影响,这可以为换流变压器的绝缘设计和校对做出贡献。

著录项

  • 来源
  • 作者单位

    State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources Beijing Key Laboratory of High Voltage & EMC North China Electric Power University, China;

    State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources Beijing Key Laboratory of High Voltage & EMC North China Electric Power University, China;

    State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources Beijing Key Laboratory of High Voltage & EMC North China Electric Power University, China;

    State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources Beijing Key Laboratory of High Voltage & EMC North China Electric Power University, China;

    Electric Power Research Institute of Guangdong Power Grid Corporation, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Electric fields; Oils; Voltage measurement; Analytical models; Insulation; Electrodes;

    机译:电场;油;电压测量;分析模型;绝缘;电极;

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