The Comparison of DGA Interpretation Techniques Application for Actual Failure Transformer Inspections Including Experience from Power Plants in Thailand

Q2 Engineering
Korraya Jongvilaikasem, N. Pattanadech, W. Wattakapaiboon, M. Kando, S. Maneerot, P. Pannil
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引用次数: 2

Abstract

: Dissolve gas analysis (DGA) is a diagnostic test technique applied for transformer condition evaluation. The interpretation of the dissolved gas results is a significant procedure to classify the incipient fault types in transformers. A variety of dissolved gas interpretation methods utilized for the same investigation case may give different fault type results. This paper investigates the performance of dissolved gas interpretation methods, including Doernenburg Ratio, Roger Ratio, IEC Ratio, Müller-Schlliesing and Soldner Method, Duval Triangle, and Duval Pentagon. The twenty-four failure transformer cases are used to evaluate the performance of the dissolved gas interpretation methods. The test result shows that the Duval pentagon interpretation technique shows the highest consistency interpretation. Besides, the Duval pentagon method demonstrates the ability to identify a normal aging problem of the transformer insulation.
DGA解释技术在泰国电厂变压器实际故障检测中的应用比较
溶解气体分析(DGA)是一种用于变压器状态评估的诊断测试技术。溶解气体结果的解释是对变压器早期故障类型进行分类的重要步骤。对于同一调查案例,不同的溶解气解释方法可能会给出不同的断层类型结果。本文研究了溶解气体解释方法的性能,包括Doernenburg比、Roger比、IEC比、m ller- schlliesing和Soldner法、Duval三角法和Duval五边形法。通过24个变压器故障实例,对溶解气解释方法的性能进行了评价。试验结果表明,杜瓦尔五边形解释技术具有最高的一致性解释效果。此外,杜瓦尔五边形方法证明了识别变压器绝缘正常老化问题的能力。
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来源期刊
CiteScore
2.70
自引率
0.00%
发文量
31
审稿时长
20 weeks
期刊介绍: International Journal on Electrical Engineering and Informatics is a peer reviewed journal in the field of electrical engineering and informatics. The journal is published quarterly by The School of Electrical Engineering and Informatics, Institut Teknologi Bandung, Indonesia. All papers will be blind reviewed. Accepted papers will be available on line (free access) and printed version. No publication fee. The journal publishes original papers in the field of electrical engineering and informatics which covers, but not limited to, the following scope : Power Engineering Electric Power Generation, Transmission and Distribution, Power Electronics, Power Quality, Power Economic, FACTS, Renewable Energy, Electric Traction, Electromagnetic Compatibility, Electrical Engineering Materials, High Voltage Insulation Technologies, High Voltage Apparatuses, Lightning Detection and Protection, Power System Analysis, SCADA, Electrical Measurements Telecommunication Engineering Antenna and Wave Propagation, Modulation and Signal Processing for Telecommunication, Wireless and Mobile Communications, Information Theory and Coding, Communication Electronics and Microwave, Radar Imaging, Distributed Platform, Communication Network and Systems, Telematics Services, Security Network, and Radio Communication. Computer Engineering Computer Architecture, Parallel and Distributed Computer, Pervasive Computing, Computer Network, Embedded System, Human—Computer Interaction, Virtual/Augmented Reality, Computer Security, VLSI Design-Network Traffic Modeling, Performance Modeling, Dependable Computing, High Performance Computing, Computer Security.
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