Investigation of a Hybrid HVDC System with DC Fault Ride-Through and Commutation Failure Mitigation Capability

被引:10
|
作者
Guo, Chunyi [1 ]
Zhao, Chengyong [1 ]
Peng, Maolan [2 ]
Liu, Wei [1 ]
机构
[1] North China Elect Power Univ, State Key Lab Alternate Elect Power Syst Renewabl, Beijing, Peoples R China
[2] China Southern Power Grid Co Ltd, Extra High Voltage Power Transmiss Co, Maintenance & Test Ctr, Guangzhou, Guangdong, Peoples R China
基金
中国国家自然科学基金;
关键词
Commutation failure; DC fault ride-through; hybrid HVDC; Line commutated converter; Voltage sourced converter; MULTILEVEL CONVERTER; LCC-HVDC; TRANSMISSION; MODULATION; TOPOLOGY;
D O I
10.6113/JPE.2015.15.5.1367
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
A hybrid HVDC system that is composed of line commutated converter (LCC) at the rectifier side and voltage source converter (VSC) in series with LCC at the inverter side is studied in this paper. The start-up strategy, DC fault ride-through capability, and fault recovery strategy for the hybrid HVDC system are proposed. The steady state and dynamic performances under start-up, AC fault, and DC fault scenarios are analyzed based on a bipolar hybrid HVDC system. Furthermore, the immunity of the LCC inverter in hybrid HVDC to commutation failure is investigated. The simulation results in PSCAD/EMTDC show that the hybrid HVDC system exhibits favorable steady state and dynamic performances, in particular, low susceptibility to commutation failure, excellent DC fault ride-through, and fast fault recovery capability. Results also indicate that the hybrid HVDC system can be a good alternative for large-capacity power transmission over a long distance by overhead line.
引用
收藏
页码:1367 / 1379
页数:13
相关论文
共 50 条
  • [1] Unidirectional HVdc Topology With DC Fault Ride-Through Capability
    Howell, Steven
    Filizadeh, Shaahin
    Gole, Aniruddha M.
    [J]. CANADIAN JOURNAL OF ELECTRICAL AND COMPUTER ENGINEERING-REVUE CANADIENNE DE GENIE ELECTRIQUE ET INFORMATIQUE, 2017, 40 (01): : 41 - 49
  • [2] Hybrid Cascaded Modular Multilevel Converter With DC Fault Ride-Through Capability for the HVDC Transmission System
    Li, Rui
    Adam, Grain Philip
    Holliday, Derrick
    Fletcher, John E.
    Williams, Barry W.
    [J]. IEEE TRANSACTIONS ON POWER DELIVERY, 2015, 30 (04) : 1853 - 1862
  • [3] DC fault ride-through capability and STATCOM operation of a HVDC hybrid voltage source converter
    Feldman, Ralph
    Farr, Ewan
    Watson, Alan J.
    Clare, Jon C.
    Wheeler, Patrick W.
    Trainer, David R.
    Crookes, R. Will
    [J]. IET GENERATION TRANSMISSION & DISTRIBUTION, 2014, 8 (01) : 114 - 120
  • [4] A Hybrid MMC Topology with dc Fault Ride-Through Capability for MTDC Transmission System
    Meng, Xinhan
    Li, Ke-Jun
    Wang, Zhuodi
    Yan, Wenning
    Zhao, Jianguo
    [J]. MATHEMATICAL PROBLEMS IN ENGINEERING, 2015, 2015
  • [5] A New Hybrid Submodule for MMC with DC Fault Ride-Through Capability
    Rudrasimha, Yedida Ayyappa
    Ghat, Mahendra B.
    Shukla, Anshuman
    [J]. 2018 IEEE INTERNATIONAL CONFERENCE ON POWER ELECTRONICS, DRIVES AND ENERGY SYSTEMS (PEDES), 2018,
  • [6] Investigation of Fault Ride-Through Capability of AC/DC Hybrid Microgrids during AC Network Faults
    Meegahapola, Lasantha
    Nutkani, Lnam Ullah
    McGrath, Brendan
    [J]. 2017 IEEE POWER & ENERGY SOCIETY GENERAL MEETING, 2017,
  • [7] DC fault ride-through of MMCs for HVDC systems: a review
    Hu, Jiabing
    Zeng, Rong
    He, Zhiyuan
    [J]. JOURNAL OF ENGINEERING-JOE, 2016,
  • [8] Precharging and DC Fault Ride-Through of Hybrid MMC-Based HVDC Systems
    Zeng, Rong
    Xu, Lie
    Yao, Liangzhong
    Morrow, D. John
    [J]. IEEE TRANSACTIONS ON POWER DELIVERY, 2015, 30 (03) : 1298 - 1306
  • [9] A DC Solid State Transformer with DC Fault Ride-through Capability
    Weng, Haoyuan
    Shi, Keyan
    Chen, Min
    Krein, Philip T.
    Xu, Dehong
    [J]. 2018 IEEE ENERGY CONVERSION CONGRESS AND EXPOSITION (ECCE), 2018, : 443 - 449
  • [10] A Transformerless Hybrid Modular Multilevel DC-DC Converter With DC Fault Ride-Through Capability
    Zhang, Fei
    Li, Wei
    Joos, Geza
    [J]. IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2019, 66 (03) : 2217 - 2226