李帅兵, 李天耕, 淡嘉豪, 康永强, 董海鹰. 电气设备复合绝缘结构的太赫兹无损检测综述[J]. 高电压技术, 2024, 50(1): 194-209. DOI: 10.13336/j.1003-6520.hve.20232250
引用本文: 李帅兵, 李天耕, 淡嘉豪, 康永强, 董海鹰. 电气设备复合绝缘结构的太赫兹无损检测综述[J]. 高电压技术, 2024, 50(1): 194-209. DOI: 10.13336/j.1003-6520.hve.20232250
LI Shuaibing, LI Tiangeng, DAN Jiahao, KANG Yongqiang, DONG Haiying. Review of Terahertz Non-destructive Testing of Composite Insulation Structures for Electrical Equipment[J]. High Voltage Engineering, 2024, 50(1): 194-209. DOI: 10.13336/j.1003-6520.hve.20232250
Citation: LI Shuaibing, LI Tiangeng, DAN Jiahao, KANG Yongqiang, DONG Haiying. Review of Terahertz Non-destructive Testing of Composite Insulation Structures for Electrical Equipment[J]. High Voltage Engineering, 2024, 50(1): 194-209. DOI: 10.13336/j.1003-6520.hve.20232250

电气设备复合绝缘结构的太赫兹无损检测综述

Review of Terahertz Non-destructive Testing of Composite Insulation Structures for Electrical Equipment

  • 摘要: 在电气设备复合绝缘结构检测方面,基于声、光、电、磁等物理量、化学组分和微观特征的检测方法得到广泛应用,但难以实现无损可视化表征。相比之下,太赫兹检测技术利用太赫兹波的光学和电磁学特性可以有效反演出被测物的结构特征和介电特性,较传统检测方法具有无损可在线测量的明显优势。为此,该文总结了当前太赫兹无损检测技术在电气设备复合绝缘结构检测方面的研究现状。首先,系统介绍了太赫兹检测方法的原理及系统,并与传统检测手段进行了比较;其次,重点总结了太赫兹时域和频域光谱及其成像技术在复合绝缘材料老化和缺陷检测中的实际应用,包括缺陷的识别和定位、组分鉴定及老化状态评估等;最后,对太赫兹无损检测技术在该领域的发展前景进行了展望。希冀该综述可帮助相关研究人员快速了解太赫兹无损检测技术在电气设备状态诊断方面的研究和应用情况,并对同类问题提供解决思路。

     

    Abstract: In the detection of composite insulation structures in electrical equipment, detection methods based on physical quantities, chemical components, and microscopic characteristics such as sound, light, electricity, and magnetism have been widely applied; however, it is difficult to achieve non-destructive visual characterization. In contrast, terahertz detection technology utilizes the optical and electromagnetic properties of terahertz waves to effectively reverse the structural and dielectric characteristics of the tested object, which has significant advantages over traditional detection methods in terms of non-destructive and online measurement. Therefore, this paper summarizes the current research status of terahertz non-destructive testing technology in the detection of composite insulation structures in electrical equipment. Firstly, the principle and system of terahertz detection method were systematically introduced, and a comparison was made between terahertz detection method and traditional detection methods. Secondly, the practical applications of terahertz time-domain and frequency-domain spectroscopy and imaging techniques in the aging and defect detection of composite insulation materials were summarized, including defect identification and localization, component identification, aging state evaluation, etc. Finally, the development prospects in terahertz non-destructive testing technology in this field were discussed. The authors hope this review can help relevant researchers quickly understand the research and application of terahertz non-destructive testing technology in electrical equipment condition diagnosis, and provide solutions to similar problems.

     

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