Title :
Improved load-adaptive control strategy for PMSG based stand-alone wind energy generation system
Author :
Zeng, Rong ; Nian, Heng ; Quan, Yu ; Liu, Jiao
Author_Institution :
Coll. of Electr. Eng., Zhejiang Univ., Hangzhou, China
Abstract :
This paper presents a novel load-adaptive control strategy for stand-alone wind energy generation system using a permanent magnet synchronous generator (PMSG). Since there is no grid supply in a stand-alone system, the output voltage has to be controlled in the constant amplitude and frequency by the load-side PWM converter. To improve the operation performance under the nonlinear load and the unbalanced load, a SVM based predictive current control technique is adopted in the inner-loop current controller to improve the performance of transient response, and a outer-loop voltage controller based on the proportional integral plus resonant (PI+R) technique is used to control the amplitude and frequency of the output voltage. Simulation results demonstrate that, by using the proposed new scheme, the stand-alone wind generation system is capable to provide the excellent output voltage performance under both of the steady-state and dynamic process with the load-adaptive ability.
Keywords :
PI control; adaptive control; electric current control; permanent magnet generators; power generation control; predictive control; synchronous generators; voltage regulators; wind power plants; SVM based predictive current control technique; improved load adaptive control strategy; inner-loop current controller; load side PWM converter; outer-loop voltage controller; permanent magnet synchronous generator; proportional integral plus resonant technique; space vector modulation; stand-alone wind energy generation system; transient response; Control systems; Frequency conversion; Permanent magnets; Pi control; Proportional control; Pulse width modulation converters; Support vector machines; Synchronous generators; Voltage control; Wind energy generation; permanent magnet synchronous generator; predictive current control (PCC); proportional integral plus resonant (PI+R); stand alone;
Conference_Titel :
Electrical Machines and Systems, 2009. ICEMS 2009. International Conference on
Conference_Location :
Tokyo
Print_ISBN :
978-1-4244-5177-7
Electronic_ISBN :
978-4-88686-067-5
DOI :
10.1109/ICEMS.2009.5382801