710 / 2022-03-31 16:55:50
Investigation of Charge Accumulation Characteristics at Gas-Solid Interface in HVDC High Speed Switch (HSS)
high speed switch,DC,gas-solid surface,surface charge
终稿
Changhong Zhang / Maintenance & Test Center of EHV Power Transmission Company of China Southern Power Grid
Yixuan Li / Xi’an Jiaotong University;State Key Laboratory of Electrical Insulation and Power Equipment
Boya Zhang / Xi’an Jiaotong University;State Key Laboratory of Electrical Insulation and Power Equipment
Weiguo Li / Maintenance & Test Center of EHV Power Transmission Company of China Southern Power Grid
Shijie Li / EHV Power Transmission Company of China Southern Power Grid
Yanjun Ruan / EHV Power Transmission Company of China Southern Power Grid
Xu Yang / Maintenance & Test Center of EHV Power Transmission Company China Southern Power Grid
Jinzhuang Lv / EHV Power Transmission Company of China Southern Power Grid
Mingyang Li / Maintenance & Test Center of EHV Power Transmission Company China Southern Power Grid
Xingwen Li / Xi'an Jiaotong University;State Key Laboratory of Electrical Insulation and Power Equipment
As the key equipment of flexible DC transmission, the operational reliability of DC high speed switch (HSS) is of great significance. However, surface charge gradually accumulated on the insulators under DC voltage when the HSS double-break is in the opening position, which further leading to the electric field distortion and even discharge. In this paper, a 3D finite simulation model was established based on the actual operating conditions of HSS. Besides, the worst operation condition of HSS that under the opening position was calculated and analyzed. Then the multi-coupled surface charge accumulated model which considered charge drift and diffusion was established based on the obtained most severe condition. Moreover, the electric field distribution and charge distribution of insulators in HSS breaker chamber was computed. The surface charge accumulation characteristics of insulators and its effect on electric field distribution was analyzed. The results show that the charge accumulated on the nozzle is much greater than the wall inside chamber. The obtained results provide a guidance for the design of HSS double-break.

 
重要日期
  • 会议日期

    09月25日

    2022

    09月29日

    2022

  • 08月15日 2022

    提前注册日期

  • 09月10日 2022

    报告提交截止日期

  • 11月10日 2022

    注册截止日期

  • 11月30日 2022

    初稿截稿日期

  • 11月30日 2022

    终稿截稿日期

主办单位
IEEE DEIS
承办单位
Chongqing University
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