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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >An expert system approach for transformer insulation diagnosis combining conventional diagnostic tests and PDC, RVM data
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An expert system approach for transformer insulation diagnosis combining conventional diagnostic tests and PDC, RVM data

机译:结合常规诊断测试和PDC,RVM数据的变压器绝缘诊断专家系统方法

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摘要

Search for a reliable and efficient insulation diagnostic tool has always been the interest of power utilities. Today a large number of methods are available that can be used for insulation condition monitoring. These methods include both traditional and newer techniques. However due to complex aging process of oil paper insulation under the influence of different types of stresses, insulation condition assessment is generally performed by experts after carefully evaluating different measurement data. Furthermore, measurement data are influenced by various factors (like conductive aging byproducts, furanic compounds, paper and oil-moisture) in addition to measurement error (if any). This makes prediction of insulation condition based on single type of measurement rather difficult. This paper presents an Expert System designed to perform insulation diagnosis. The Expert System considers measurement data obtained using both traditional and newer techniques in order to come to a definitive conclusion. The Expert System extracts insulation condition sensitive information from data obtained using different techniques and then uses these to devise an optimized insulation model. This optimized model is used to predict papermoisture content and other insulation condition sensitive parameters. Since these values are predicted using optimized model, they are not dependent on a single type of measurement and hence are less likely to be affected by error of any specific measurement. The performance of the developed Expert System is first tested on a laboratory sample and then on several real life power transformers belonging to NTPC Ltd.
机译:寻找可靠,有效的绝缘诊断工具一直是电力公司的兴趣所在。如今,有大量方法可用于绝缘状态监测。这些方法包括传统技术和更新技术。但是,由于油纸绝缘的老化过程受不同类型应力的影响,因此绝缘条件的评估通常由专家在仔细评估不同的测量数据后进行。此外,除了测量误差(如果有)之外,测量数据还受各种因素(如导电老化副产物,呋喃化合物,纸张和油湿)的影响。这使得基于单一测量类型的绝缘状况的预测变得相当困难。本文介绍了一种用于执行绝缘诊断的专家系统。专家系统会考虑使用传统技术和更新技术获得的测量数据,以便得出明确的结论。专家系统从使用不同技术获得的数据中提取绝缘条件敏感信息,然后使用这些信息来设计优化的绝缘模型。该优化模型用于预测纸张水分含量和其他绝缘条件敏感参数。由于这些值是使用优化模型预测的,因此它们不依赖于单一类型的测量,因此不太可能受到任何特定测量误差的影响。首先在实验室样本上测试开发的Expert System的性能,然后在NTPC Ltd.的几台现实生活电力变压器上进行测试。

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