DocumentCode
1702930
Title
Analysis on and precautions against large-scale wind turbines off-grid
Author
Han ZiFen ; Cao Yinli ; Jia HuaiSen ; Wang Jiandong ; Lu Liang
Author_Institution
Gansu Electr. Power Dispatching & Commun. Center, Lanzhou, China
Volume
3
fYear
2011
Firstpage
1974
Lastpage
1980
Abstract
In the last few months, off-grid accidents of a large number of wind turbines in several large-scale wind power bases frequently occurred during the windy weather, severely threatening not only secure operation of wind farms but also secure the stable operation of power grid. This paper analyzes the cause of the “2.24” large scale wind turbines off-grid and other accidents, having found some common problems of the existing wind farms: firstly, almost none of wind turbines in operation has the low voltage ride through (LVRT) capability; secondly, dynamic reactive power compensation devices are functionally in-complete and chaotically managed; thirdly, poor construction techniques and equipment in-stallation are found in wind farms; fourthly, the main control system functions of wind turbines haven´t been unveiled to users, and their coordinated control strategies do not meet the requirements, which demand wind turbines keep on-grid during grid voltage instantaneously drop; fifthly, all 35kV (10kV) systems in wind farms are not grounded, in which the single-phase grounding can quickly develop into phase to phase or three-phase fault to exaggerate the accident. Besides, the small current grounding line in 35kV systems is not reliable. In the current situation, this paper proposed countermeasures how to prevent large-scale wind turbine off-grid accidents, generally speaking, rectifying wind turbine LVRT capacity, refreshing wind turbine protection programs, opening reactive power regulation function of wind turbines, optimizing small current grounding line as well as improving the functions of dynamic reactive power compensation devices and strengthening the management of use, etc.
Keywords
earthing; power generation control; power generation protection; power grids; reactive power control; wind power plants; wind turbines; coordinated control strategies; dynamic reactive power compensation devices; equipment installation; large-scale wind turbine off-grid accidents; low voltage ride through capability; off-grid accidents; power grid; reactive power regulation function; rectifying wind turbine LVRT capacity; single-phase grounding; small current grounding line; three-phase fault; voltage 10 kV; voltage 35 kV; wind farms; wind turbine protection programs; Substations; Wind power generation; Wind turbines; Dynamic reactive power compensation device; Grounding line selection in non-solidly earthed system; Low Voltage Ride Through(LVRT); Wind turbine; off-grid;
fLanguage
English
Publisher
ieee
Conference_Titel
Advanced Power System Automation and Protection (APAP), 2011 International Conference on
Conference_Location
Beijing
Print_ISBN
978-1-4244-9622-8
Type
conf
DOI
10.1109/APAP.2011.6180765
Filename
6180765
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