DocumentCode :
84567
Title :
Optimized Reactive Power Flow of DFIG Power Converters for Better Reliability Performance Considering Grid Codes
Author :
Dao Zhou ; Blaabjerg, Frede ; Lau, Mogens ; Tonnes, Michael
Author_Institution :
Dept. of Energy Technol., Aalborg Univ., Aalborg, Denmark
Volume :
62
Issue :
3
fYear :
2015
fDate :
Mar-15
Firstpage :
1552
Lastpage :
1562
Abstract :
If there is no reactive power exchange between a doubly fed induction generator (DFIG) and a grid, the various characteristics of the power converters in a DFIG wind turbine system cause the lifetime expectancy of a rotor-side converter (RSC) to be significantly less than that of a grid-side converter (GSC). In order to fulfill modern grid codes, over-excited reactive power injection will further reduce the lifetime of the RSC. In this paper, the additional stress of a power semiconductor due to the reactive power injection is first evaluated in terms of a modulation index and the current loading. Then, an optimized reactive power flow is proposed in the case where an over-excited reactive power support is applied with the joint compensation from both the RSC and the GSC. Finally, some experimental validations are performed at a downscale DFIG prototype. It is concluded that, among the different combined reactive power support strategies, the best scheme will tradeoff the lifetime between the GSC and the RSC.
Keywords :
asynchronous generators; power convertors; power generation reliability; power grids; power semiconductor devices; wind turbines; GSC; RSC; current loading; doubly fed induction generator; downscale DFIG prototype; grid-side converter; modern grid codes; modulation index; over-excited reactive power injection; power converters; power semiconductor; reactive power flow optimization; reliability performance; rotor-side converter; wind turbine system; Insulated gate bipolar transistors; Junctions; Reactive power; Rotors; Stators; Stress; Wind speed; Consumed lifetime; Doubly-fed induction generator; consumed lifetime; doubly fed induction generator (DFIG); reactive power; thermal behavior;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2014.2359911
Filename :
6909025
Link To Document :
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