DocumentCode :
1712362
Title :
Stabilization of Wind Farms Connected with Multi Machine Power System by Using STATCOM
Author :
Muyeen, S.M. ; Ali, M.H. ; Takahashi, R. ; Murata, T. ; Tamura, J.
Author_Institution :
Electr. & Electron. Eng. Dept., Kitami Inst. of Technol., Kitami
fYear :
2007
Firstpage :
299
Lastpage :
304
Abstract :
In this work, steady state characteristic and transient stability of wind turbine generator system (WTGS) are analyzed in detail with using a power system model, in which two wind farms are connected with multi-machine power system. At each wind farm terminal one three-level PWM based STATCOM is connected. Fuzzy logic controller (FLC) is used as the control methodology of the STATCOM. Since shaft system modeling of wind turbine has a significant effect on the transient stability analysis of WTGS, two-mass shaft model is adopted in this study. The capacitor bank capacity of wind generator is reduced by 15 percentages when STATCOM is installed at wind farm. As wind speed is always fluctuating, the terminal voltage of wind generator also fluctuates randomly, which has an adverse effect on the rest of the power system. It is reported that the STATCOM with reduced capacitor bank can decrease the voltage fluctuations of multi-machine power system as well as wind generator terminals. Moreover, it is shown that STATCOM can also enhance the transient stability of induction and synchronous generators when a network disturbance occurs in the power system. Both of the symmetrical and the unsymmetrical faults are analyzed. Both multi-wind generators wind farm and aggregated single generator wind farm models are used for the sake of detailed analyses. Finally, it is concluded that the STATCOM can enhance both of the steady state characteristic and transient stability of wind farms connected with multi-machine power system.
Keywords :
asynchronous generators; capacitor storage; fault diagnosis; fuzzy control; power system interconnection; power system stability; pulse width modulation; static VAr compensators; synchronous generators; turbogenerators; wind turbines; PWM based STATCOM; capacitor bank capacity; fuzzy logic controller; induction generators; multimachine power system; network disturbance; shaft system modeling; synchronous generators; transient stability analysis; two-mass shaft model; unsymmetrical faults; wind farm stabilization; wind farm terminal; wind generator terminals; wind turbine generator system; Automatic voltage control; Power generation; Power system analysis computing; Power system faults; Power system modeling; Power system stability; Power system transients; Power systems; Wind energy generation; Wind farms; STATCOM; fuzzy logic controller; multi-machine; total kinetic energy; transient stability; two-mass shaft model; wind generator;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Tech, 2007 IEEE Lausanne
Conference_Location :
Lausanne
Print_ISBN :
978-1-4244-2189-3
Electronic_ISBN :
978-1-4244-2190-9
Type :
conf
DOI :
10.1109/PCT.2007.4538333
Filename :
4538333
Link To Document :
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