DocumentCode
1487665
Title
Fault ride through of fully rated converter wind turbines with AC and DC transmission
Author
Ramtharan, G. ; Arulampalam, Atputharajah ; Ekanayake, J.B. ; Hughes, F.M. ; Jenkins, Nick
Author_Institution
Garrad Hassan & Partners Ltd., Bristol, UK
Volume
3
Issue
4
fYear
2009
fDate
12/1/2009 12:00:00 AM
Firstpage
426
Lastpage
438
Abstract
Fault ride through of fully rated converter wind turbines in an offshore wind farm connected to onshore network via either high voltage AC (HVAC) or high voltage DC (HVDC) transmission is described. Control of the generators and the grid side converters is shown using vector control techniques. A de-loading scheme was used to protect the wind turbine DC link capacitors from over voltage. How de-loading of each generator aids the fault ride through of the wind farm connected through HVAC transmission is demonstrated. The voltage recovery of the AC network during the fault was enhanced by increasing the reactive power current of the wind turbine grid side converter. A practical fault ride through protection scheme for a wind farm connected through an HVDC link is to employ a chopper circuit on the HVDC link. Two alternatives to this approach are also discussed. The first involves de-loading the wind farm on detection of the fault, which requires communication of the fault condition to each wind turbine of the wind farm. The second scheme avoids this complex communication requirement by transferring the fault condition via control of the HVDC link to the offshore converter. The fault performances of the three schemes are simulated and the results were used to assess their respective capabilities.
Keywords
HVDC power convertors; HVDC power transmission; fault diagnosis; offshore installations; power generation control; power generation protection; wind power plants; wind turbines; HVDC transmission; de-loading scheme; fault ride; fully rated converter wind turbines; grid side converter; grid side converters; high voltage AC transmission; high voltage DC transmission; offshore wind farm; onshore network; protection scheme; reactive power current; vector control techniques; wind farm;
fLanguage
English
Journal_Title
Renewable Power Generation, IET
Publisher
iet
ISSN
1752-1416
Type
jour
DOI
10.1049/iet-rpg.2008.0018
Filename
5270268
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