Title :
Research on offshore wind farm VSC-HVDC transmission system fault ride through issue
Author :
Li Yan ; Sun Wei ; Chi Yong-Ning ; Wei Lin-Jun ; Liang Wei
Abstract :
With the development of power electronics technology, VSC-HVDC has been applied in some offshore wind farm integration projects in Europe by IGBTs and PWM control technology. At the same time, a lot of works have been done on wind farm AC integration fault ride through, and certain results have been achieved, but offshore wind farm DC integration fault ride through issue needs to be studied deeply. The paper focus on offshore wind farm VSC-HVDC transmission system fault ride through. Based on AC and DC wind energy integration stability influence analysis, compared the different integration mode technology characteristics, the main stability influence factors of DC integration will be given. Then the offshore wind farm VSC-HVDC transmission system fault ride through scheme is studied according to the wind farm capacity. Chopper and wind turbine coordinated control scheme will be adopted to provide dynamic reactive support on the basis of the system meeting the requirements of the fault ride through. Finally, a practical example is done to verify the correctness and effectiveness of the proposed scheme.
Keywords :
HVDC power transmission; insulated gate bipolar transistors; offshore installations; power generation control; wind power plants; AC wind energy integration stability influence analysis; Chopper turbine coordinated control scheme; DC wind energy integration stability influence analysis; Europe; IGBT; PWM control technology; dynamic reactive support; offshore wind farm DC integration fault ride through; offshore wind farm VSC-HVDC transmission system fault ride through; offshore wind farm integration projects; power electronics technology; wind farm AC integration fault ride through; wind farm capacity; wind turbine coordinated control scheme; Choppers (circuits); Circuit faults; Power conversion; Voltage control; Wind farms; Wind turbines; FRT; Offshore Wind Farm; VSC-HVDC;
Conference_Titel :
Power System Technology (POWERCON), 2014 International Conference on
Conference_Location :
Chengdu
DOI :
10.1109/POWERCON.2014.6993701