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The Journal of Engineering
Study on the fault ride through critical elements and coordinated control of DFIG's converters
Xinshou Tian
1
  Yongning Chi
1
  Yan Li
1
  Bingjie Tang
1
 
[1] State Key Laboratory of Operation and Control of Renewable Energy & Storage Systems (China Electric Power Research Institute);
关键词:
rotors
;
power convertors
;
power generation faults
;
shafts
;
power generation control
;
power grids
;
wind turbines
;
electric current control
;
asynchronous generators
;
wind power plants
;
additional hardware equipment
;
coordinated control strategy
;
reactive current support
;
improving RSC control strategy
;
grid fault
;
matlab/Simulink simulation studies
;
reactive current control scheme
;
extra hardware equipment
;
improving RSG control scheme
;
rotor
;
doubly fed induction generator
;
FRT problem
;
voltage stability
;
given time
;
continuous operation
;
(FRT) capability
;
modern grid codes
;
power grid
;
management
;
safe operation
;
great challenges
;
large-scale wind power integration capacity
;
DFIG's converters
;
critical elements
;
fault ride
;
DFIG based wind turbine shaft
;
enhanced reactive support
;
DOI : 10.1049/joe.2018.8609
来源:
DOAJ
【 授权许可】
Unknown
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期刊论文
Study on the fault ride through critical elements and coordinated control of DFIG's converters
Investigation of wound rotor induction machine vibration signal under stator electrical fault conditions
Investigation of wound rotor induction machine vibration signal under stator electrical fault conditions