Defect Analysis of Valve Based Electronic Equipment in HVDC Transmission System Based on Association Analysis Algorithm

Junsong Yu, Yaohui Xiao, Weiming Li, Weifeng Ding, Zhenzhen Zhou, Yuhao He, Hua-shan Huang, S. He
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Abstract

The core equipment of the DC transmission system is the converter valve control equipment. It is crucial to analyze the defects and abnormalities of valve based electronic equipment to ensure the stable operation of the DC transmission system. This paper proposes a defect analysis method for HVDC valve based electronic equipment based on association analysis algorithm. Firstly, based on the basic structure and principle of valve based electronic equipment, the collection of corresponding defect data is introduced; Secondly, the original data is cleaned, quantized and encoded, and then imported into the FP-Growth algorithm. By constructing an FP-Tree, the defect characteristics, influencing factors, and the degree of correlation between various devices of valve based electronic equipment are analyzed. This method can efficiently and intelligently achieve correlation analysis and fault tracing of core equipment defects in DC transmission systems. This provides a theoretical basis for the formulation of maintenance strategies for operation and maintenance personnel. Finally, the effectiveness of this method is verified by a simulation example of defect data of converter valve based electronic equipment in a real DC transmission system.
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基于关联分析算法的高压直流输电系统阀门型电子设备缺陷分析
直流输电系统的核心设备是换流阀控制设备。分析基于阀门的电子设备的缺陷和异常是保证直流输电系统稳定运行的关键。提出了一种基于关联分析算法的高压直流阀门电子设备缺陷分析方法。首先,根据阀门电子设备的基本结构和工作原理,介绍了相应缺陷数据的采集;其次,对原始数据进行清洗、量化和编码,然后导入到FP-Growth算法中。通过构建FP-Tree,分析了基于阀的电子设备的缺陷特征、影响因素以及各器件之间的关联程度。该方法可以高效、智能地实现直流输电系统核心设备缺陷的关联分析和故障跟踪。为操作维护人员制定维护策略提供理论依据。最后,通过实际直流输电系统中基于换向阀的电子设备缺陷数据的仿真实例,验证了该方法的有效性。
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