• DocumentCode
    3665222
  • Title

    Impacts of three MMC-HVDC configurations on AC system stability under DC line faults

  • Author

    Geng Tang; Zheng Xu; Yuzhi Zhou

  • Author_Institution
    College of Electrical Engineering, Zhejiang University, Hangzhou, 310027, China
  • fYear
    2015
  • fDate
    7/1/2015 12:00:00 AM
  • Firstpage
    1
  • Lastpage
    1
  • Abstract
    Summary form only given. This paper analyzes the dc line fault transient stability characteristics of AC/DC power systems based on three different modular multilevel converter based high power direct current (MMC-HVDC) configurations. The first configuration is half bridge sub-module based MMC (H-MMC) HVDC configuration, which clears dc line faults by tripping the ac circuit breakers. Voltage source converters (VSC) with dc line fault clearance ability constitute the second configuration. A line-commutated convener (LCC) and MMC hybrid HVDC configuration with dc line fault clearance ability, named LCC-diode-MMC (LCC-D-MMC), is the third configuration. The detailed processes of clearing dc line faults in three MMC-HVDC configurations are analyzed. The equal area criterion is utilized to analyze the dc line fault transient processes. Besides, to evaluate the power system transient stability characteristics in three MMC-HVDC configurations, an index, called critical ac transmitted power (Pac_critical), is proposed. Under the same dc line to ground fault, transient stability characteristics of three test systems based on the three different MMC-HVDC configurations are compared. Excellent performances of the LCC-D-MMC HVDC system under the dc line fault are demonstrated through comparison of Pac_critical in the three test systems. Finally, the study is extended to a modified New England 39 bus system, and the simulation results also tally with the theoretical analysis.
  • Keywords
    "Circuit faults","Power system stability","Circuit stability","Stability criteria","Transient analysis"
  • Publisher
    ieee
  • Conference_Titel
    Power & Energy Society General Meeting, 2015 IEEE
  • ISSN
    1932-5517
  • Type

    conf

  • DOI
    10.1109/PESGM.2015.7285663
  • Filename
    7285663