Integrating Wind Farm to the Grid Using Hybrid Multiterminal HVDC Technology

被引:96
作者
Chen, Xia [1 ]
Sun, Haishun [1 ]
Wen, Jinyu [1 ]
Lee, Wei-Jen [2 ]
Yuan, Xufeng [3 ]
Li, Naihu [4 ]
Yao, Liangzhong [5 ]
机构
[1] Huazhong Univ Sci & Technol, Coll Elect & Elect Engn, Wuhan 430074, Peoples R China
[2] Univ Texas Arlington, Arlington, TX 76019 USA
[3] Guizhou Univ, Guiyang 550025, Peoples R China
[4] Alstom Grid China Technol Ctr, Shanghai 201114, Peoples R China
[5] Alstom Grid Res & Technol Ctr, Stafford ST17 4LX, England
基金
中国国家自然科学基金;
关键词
Current-source converter (CSC); hybrid multiterminal HVdc; voltage-source converter (VSC); weak or passive system; wind power; FED INDUCTION GENERATOR; TURBINE; POWER; SYSTEMS;
D O I
10.1109/TIA.2010.2102326
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Since wind generation is one of the most mature renewable energy technologies, it will have the greatest share of future renewable energy portfolio. Due to the special characteristics of the wind generation, it requires extensive research to explore the best choice for wind power integration. In light of the practical project experience, this paper explores the feasibility of using HVdc transmission technology, particularly multiterminal HVdc (MTDC), as one of the preferable solutions to solve the grid interconnection issue of wind generation. This paper mainly focuses on the application of the hybrid MTDC to integrate wind farms into the electric power grid. A five-terminal hybrid MTDC model system including a large capacity wind farm is set up in PSCAD/EMTDC, in which the corresponding control strategy is designed. The operation characteristic of the hybrid system is studied, and the proposed control strategy is verified through simulation under various conditions, including wind speed variation and faults on ac side and dc side.
引用
收藏
页码:965 / 972
页数:8
相关论文
共 23 条
[1]   Hybrid HVDC system for power transmission to island networks [J].
Andersen, BR ;
Xu, L .
IEEE TRANSACTIONS ON POWER DELIVERY, 2004, 19 (04) :1884-1890
[2]  
[Anonymous], 2003, DYN MOD GE 1 5 3 6 W
[3]   A vector-controlled doubly-fed induction generator for a variable-speed wind turbine application [J].
Atkinson, DJ ;
Lakin, RA ;
Jones, R .
TRANSACTIONS OF THE INSTITUTE OF MEASUREMENT AND CONTROL, 1997, 19 (01) :2-12
[4]   Dynamic modeling of doubly fed induction generator wind turbines [J].
Ekanayake, JB ;
Holdsworth, L ;
Wu, XG ;
Jenkins, N .
IEEE TRANSACTIONS ON POWER SYSTEMS, 2003, 18 (02) :803-809
[5]   VSC-Based HVDC Power Transmission Systems: An Overview [J].
Flourentzou, Nikolas ;
Agelidis, Vassilios G. ;
Demetriades, Georgios D. .
IEEE TRANSACTIONS ON POWER ELECTRONICS, 2009, 24 (3-4) :592-602
[6]   CONTROLS MODELING AND VERIFICATION FOR THE PACIFIC INTERTIE HVDC 4-TERMINAL SCHEME [J].
HAMMAD, A ;
MINGHETTI, R ;
HASLER, J ;
EICHER, P ;
BUNCH, R ;
GOLDSWORTHY, D ;
WOODFORD, DA .
IEEE TRANSACTIONS ON POWER DELIVERY, 1993, 8 (01) :367-375
[7]   Multiterminal HVDC systems in urban areas of large cities [J].
Jiang, HB ;
Ekstrom, A .
IEEE TRANSACTIONS ON POWER DELIVERY, 1998, 13 (04) :1278-1284
[8]   Multi-terminal DC (MTDC) system for wind farms powered by doubly-fed induction generators (DFIGs) [J].
Jiao, LW ;
Joos, G ;
Abbey, C ;
Zhou, FQ ;
Ooi, BT .
PESC 04: 2004 IEEE 35TH ANNUAL POWER ELECTRONICS SPECIALISTS CONFERENCE, VOLS 1-6, CONFERENCE PROCEEDINGS, 2004, :1413-1418
[9]   EXPANDABLE MULTITERMINAL DC SYSTEMS BASED ON VOLTAGE DROOP [J].
JOHNSON, BK ;
LASSETER, RH ;
ALVARADO, FL ;
ADAPA, R .
IEEE TRANSACTIONS ON POWER DELIVERY, 1993, 8 (04) :1926-1932
[10]   Optimal acquisition and aggregation of offshore wind power by multiterminal voltage-source HVDC [J].
Lu, WX ;
Ooi, BT .
IEEE TRANSACTIONS ON POWER DELIVERY, 2003, 18 (01) :201-206