首页> 外文期刊>Universal Journal of Electrical and Electronic Engineering >Development of Dimensional Relation of Surface Leakage Current in Correlation with Humidity and Applied Voltage Stress for a Contaminated Overhead Insulator
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Development of Dimensional Relation of Surface Leakage Current in Correlation with Humidity and Applied Voltage Stress for a Contaminated Overhead Insulator

机译:受污染的架空绝缘子的表面泄漏电流与湿度和施加的电压应力的尺寸关系的发展

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摘要

Many empirical relations are proposed to estimate the surface leakage current (LC) through the experimental and simulation works. However, there are less exploration on developing the empirical equation that describe the surface LC in correlation with humidity and applied voltage stress. In this paper, an empirical relationship between the surface LC with humidity and applied voltage stress is proposed by using Dimensional Analysis (DA) technique. DA introduces a systematic approach based on Buckingham Theorem to present a complex relationship between the physical quantities into a dimensionless set of products. For validation purpose, the results obtained from the proposed mathematical model are compared to the practical data from the previous researchers. The validation shows that the analytical results are within the range of experimental results. By further analyzing the quantitative error analysis; mean absolute error (MAE) and root mean square error (RMSE), the proposed model is found to be able to be used as a predictive model to estimate the performance of surface LC at different relative humidity and applied voltage stress and contribute in reducing the testing expenses.
机译:通过实验和仿真工作,提出了许多经验关系来估计表面漏电流(LC)。然而,很少有研究开发经验公式来描述与湿度和施加的电压应力相关的表面LC。本文利用尺寸分析(DA)技术提出了表面LC的湿度与施加的电压应力之间的经验关系。 DA引入了基于白金汉定理的系统方法,以将物理量之间的复杂关系呈现为无量纲的产品集。为了进行验证,将所提出的数学模型获得的结果与先前研究人员的实际数据进行比较。验证表明分析结果在实验结果范围内。通过进一步分析定量误差分析;平均绝对误差(MAE)和均方根误差(RMSE),所提出的模型能够用作预测模型,以估计在不同相对湿度和施加电压应力下表面LC的性能,并有助于降低测试费用。

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