1066 / 2019-05-20 06:35:55
Fault Protection Strategy and Switching Overvoltage in a 500 kV MMC-HVDC Grid
Fault protection strategy,hybrid dc circuit breaker,MMC,switching overvoltage
全文录用
Xue Han / Chongqing university
Wenxia Sima / Chongqing university
Ming Yang / Chongqing university
Licheng Li / Electric Power Research Institute of China Southern Power Grid Company
Tao Yuan / Chongqing university
Zhengzheng Fu / Chongqing university
The Zhangbei ±500 kV modular multi-level converters (MMC)-based high voltage direct current (HVDC) project to be built in China will use overhead transmission lines with dc circuit breakers (DCCBs). However, the operating characteristics of DCCBs in MMC-HVDC systems are still not clear. In this paper, a four-terminal MMC-HVDC grid with detailed hybrid DCCB models is built and the fault protection strategy is proposed to study the switching overvoltage. The results indicate that fault protection strategy can protect the equipment and cause the overvoltages varying due to the change of the fault location. For the fault without protection, the overvoltage of three-phrase grounding fault at the valve side of the converter is the largest, which is 1295.2 kV (2.6 p.u.). For the fault with protection, the overvoltage of line-to-line fault is the largest, which is 1206.8 kV (2.41 p.u.). The theoretical analysis indicates that the outlet voltage of the converter increases when the DCCBs open because it is the superposition of the voltage of the line reactance and the residual voltage of the arrester, which is consistent with simulation analysis. The results can provide references for the application of DCCBs and construction of MMC-HVDC grids.
重要日期
  • 会议日期

    10月21日

    2019

    10月24日

    2019

  • 10月13日 2019

    摘要录用通知日期

  • 10月13日 2019

    初稿截稿日期

  • 10月14日 2019

    初稿录用通知日期

  • 10月24日 2019

    注册截止日期

  • 10月29日 2019

    终稿截稿日期

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