Terahertz Frequency Domain Response for Insulation State Assessment of Vehicle Cable Terminal Under Electro-Thermal Aging

IF 5.9 2区 工程技术 Q2 ENERGY & FUELS CSEE Journal of Power and Energy Systems Pub Date : 2024-03-03 DOI:10.17775/CSEEJPES.2023.02300
Binglei Cao;Shuaibing Li;Yi Cui;Dong Yang;Yongqiang Kang;Baopeng Lu;Guangning Wu
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Abstract

To accurately diagnose the aging condition of the vehicle-mounted high-voltage cable terminals under the combined electro-thermal stress, this paper proposes a terahertz frequency spectrum technology-based method. First, an electro-thermal aging platform is established in the laboratory to obtain the test samples of ethylene-propylene rubber (EPR) cable terminals with different aging gradients. Then, the degree of electro-thermal aging is characterized by frequency spectrum, absorption coefficient spectrum, absorption spectrum, refractive index and dielectric constant in the terahertz domain. Moreover, the micro-morphology and micro-area structure of the test samples under different aging gradients are also observed by scanning electron microscopy, and both the material and chemical properties are analyzed. The findings demonstrate that terahertz frequency spectra offer significant benefits in non-destructively detecting and identifying the insulation condition of vehicle cable terminals during electro-thermal aging. Laboratory tests confirm the feasibility of utilizing the terahertz frequency spectrum to assess the insulation aging state of EPR cable terminals, making it potentially applicable for on-site purposes.
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电热老化下车载电缆终端绝缘状态评估的太赫兹频域响应
为了准确诊断车载高压电缆端子在复合电热应力作用下的老化状况,本文提出了一种基于太赫兹频谱技术的方法。首先,在实验室建立电热老化平台,获取不同老化梯度的EPR电缆端子试件。然后用太赫兹域的频谱、吸收系数谱、吸收谱、折射率和介电常数表征了电热老化的程度。通过扫描电镜观察了不同时效梯度下试样的微观形貌和微区结构,并对试样的材料性能和化学性能进行了分析。研究结果表明,太赫兹频谱在车辆电缆端子电热老化过程中绝缘状况无损检测和识别方面具有显著的优势。实验室测试证实了利用太赫兹频谱评估EPR电缆终端绝缘老化状态的可行性,使其有可能适用于现场目的。
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来源期刊
CiteScore
11.80
自引率
12.70%
发文量
389
审稿时长
26 weeks
期刊介绍: The CSEE Journal of Power and Energy Systems (JPES) is an international bimonthly journal published by the Chinese Society for Electrical Engineering (CSEE) in collaboration with CEPRI (China Electric Power Research Institute) and IEEE (The Institute of Electrical and Electronics Engineers) Inc. Indexed by SCI, Scopus, INSPEC, CSAD (Chinese Science Abstracts Database), DOAJ, and ProQuest, it serves as a platform for reporting cutting-edge theories, methods, technologies, and applications shaping the development of power systems in energy transition. The journal offers authors an international platform to enhance the reach and impact of their contributions.
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