Research Status and Prospect of High Voltage Vacuum Circuit Breaker

被引:0
|
作者
Zhong J. [1 ]
Sun G. [2 ]
Yang B. [3 ]
Zhao X. [2 ]
Li X. [2 ]
Ma C. [2 ]
Jia H. [1 ]
Zhang X. [4 ]
机构
[1] China Electrical Equipment Group Science and Technology Research Institute Co., Ltd., Shanghai
[2] Pinggao Group Co., Ltd., Pingdingshan
[3] Henan High Voltage Apparatus Research Institute Co., Ltd., Pingdingshan
[4] School of Electical Engineering, Shenyang University of Technology, Shenyang
关键词
large capacity; reliability; SF6 alternative technology; single-break vacuum interrupter; vacuum interrupting technology;
D O I
10.13336/j.1003-6520.hve.20232381
中图分类号
学科分类号
摘要
In view of the development needs of green power grid, the characteristics of SF6 complete substitution technology and partial substitution technology route and related technologies are summarized and compared, and it is pointed out that vacuum interrupting technology is an effective means for green and low-carbon development of power grid. Comparing and analyzing the technical characteristics and research status of multi-break vacuum circuit breakers at this stage, we believe that single-break vacuum circuit breakers have significant advantages in terms of structure and reliability.At present, the commercial single-break vacuum interrupter has been developed to 145 kV/40 kA, and the research status and future development trend of high-voltage and high-current single-break vacuum interrupter indoor and outdoor insulation technology, arc morphological evolution law and opening and closing control, temperature rise characteristics and welding quality stability of vacuum interrupter are reviewed. The results show that the pressure equalization design of the vacuum gap inside the vacuum interrupter and the “saturation” of the insulation of the long vacuum gap are the key factors restricting the increase of the voltage of the interrupter; The preparation of the ablation-resistant contact material and the design of the magnetic field are very important for the formation process of anode spots on the contact surface and the matching of the opening and closing speed of the vacuum circuit breaker; Selecting the contact structure with low loop resistances and optimizing the heat dissipation structure of the vacuum circuit breaker can effectively improve the rated current capacity of the vacuum interrupter; In addition, the influencing factors of vacuum interrupter welding quality and stability are summarized, and it is pointed out that the ceramics metallization and selection of appropriate brazing temperature and solder can significantly improve the welding strength. Finally, it is pointed out that vacuum circuit breakers tend to develop with characteristics of large-capacity, miniaturization, intelligence, low-overvoltage, maintenance-free, specialization and multi-function. © 2024 Science Press. All rights reserved.
引用
收藏
页码:451 / 466
页数:15
相关论文
共 92 条
  • [31] SATO S, KOYAMA K., Relationship between electrode surface roughness and impulse breakdown voltage in vacuum gap of Cu and Cu-Cr electrodes, IEEE Transactions on Dielectrics and Electrical Insulation, 10, 4, pp. 576-582, (2003)
  • [32] SCHUMANN U, GIERE S, KURRAT M., Breakdown voltage of electrode arrangements in vacuum circuit breakers, IEEE Transactions on Dielectrics and Electrical Insulation, 10, 4, pp. 557-562, (2003)
  • [33] SCHELLEKENS H, GAUDART G., Compact high-voltage vacuum circuit breaker, a feasibility study, IEEE Transactions on Dielectrics and Electrical Insulation, 14, 3, pp. 613-619, (2007)
  • [34] HE Junjia, ZOU Jiyan, ZHANG Hanming, Et al., Improvement of voltage withstand level of vacuum interrupters, High Voltage Engineering, 22, 2, pp. 50-53, (1996)
  • [35] WANG Baoli, Research on the power frequency aging test of vacuum interrupter, (1998)
  • [36] ZHAO Zhizhong, Design and experimental researches on the structure and processes of high voltage interrupters, (2006)
  • [37] XUE Feng, LI Min, LIN Liangwei, Et al., Influence of current conditioning process parameters on contact surface morphology in vacuum interrupter, Electrical and Energy Management Technology, 10, pp. 44-47, (2022)
  • [38] YAO Shibin, Effect of voltage and current refining on the quality of vacuum interrupter, High Voltage Apparatus, 6, pp. 52-55, (2000)
  • [39] ZHAI Xiaoshe, PENG Chaozheng, GAO Zexi, Et al., Conditioning technology of vacuum interrupter with high voltage pulse superimposed on DC voltage, High Voltage Engineering, 49, 9, pp. 3793-3800, (2023)
  • [40] CHENG Yanlin, XIANG Wei, LEI Yangjun, Et al., Curving electrode’s effect on surface flashover hold-off voltage of alumina ceramics in vacuum, Insulating Materials, 41, 1, pp. 49-52, (2008)