DocumentCode :
140470
Title :
Fault characteristics analysis of two HVDC technologies for wind power integration
Author :
Xia Chen ; Yunhe Hou ; Jinyu Wen
Author_Institution :
Dept. of Electr. & Electron. Eng., Univ. of Hong Kong, Hong Kong, China
fYear :
2014
fDate :
19-22 Feb. 2014
Firstpage :
1
Lastpage :
6
Abstract :
This paper analyzes the operation and control principle of the two transmission technologies, i.e. Line-Commutated Converter-HVDC (LCC-HVDC) and Voltage Source Converter-HVDC (VSC-HVDC) for wind farm integration. It explores the fault ride-through (FRT) capability of the two HVDC under fault conditions according to the characteristics of the two kinds of converters. To ensure satisfactory ride through grid faults, the current limit controller is initiated to reduce the active power injected into the HVDC during the fault. The approach adopted may avoid the overcurrent or overvoltage in the converter and the tripping of the wind turbines, as well as facilitate the fast recovery. Comparative simulation results verified that LCC-HVDC and VSC-HVDC could prevent the fault propagation and ensure the wind farm operation continuously in the event of severe grid fault.
Keywords :
HVDC power convertors; HVDC power transmission; commutation; electric current control; overvoltage; power control; power generation control; power generation faults; power grids; power transmission control; power transmission faults; wind power plants; wind turbines; FRT capability; LCC-HVDC transmission technology; VSC-HVDC; active power injected reduction; current limit controller; fault propagation; fault ride-through capability; grid fault characteristics analysis; line commutated converter-HVDC transmission technology; overcurrent avoidance; overvoltage avoidance; wind farm integration; wind power integration; wind turbine tripping; Acceleration; Automatic voltage control; Inverters; Time-frequency analysis; Turbines; Wind farms; Line-Commutated Converter; Voltage Source Converter; Wind power integration; grid fault;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Innovative Smart Grid Technologies Conference (ISGT), 2014 IEEE PES
Conference_Location :
Washington, DC
Type :
conf
DOI :
10.1109/ISGT.2014.6816453
Filename :
6816453
Link To Document :
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