Title :
Twi-Sliding Mode Control for Efficiency Improvement in Variable Speed Small Wind Turbine Systems
Author :
Yang, Guoliang ; Li, Huiguang
Author_Institution :
Yan Shan Univ., Qinhuangdao
Abstract :
The global electrical energy consumption is rising and there is a steady increase of the demand on the power capacity, efficient production, distribution and utilization of energy. This study focuses on the improvement of overall efficiency in the wind power generation systems (WPGS) by restricting the operation of the wind turbine to the optimal efficiency region, using a control strategy based on two chattering-free sliding mode controllers (SMCs). One of the designed SMCs performs wind turbine speed control, while the other controls the generator torque. The control strategy is designed and simulated by using the Matlab/Simulink. The performance of the control strategy is compared with that of the original model for the wind turbine torque, generator volt/current and the model with the auxiliary power unit (APU) .In this study, in spite of the simple modeling approach taken to model the APU and the optimal efficiency region, an improved performance has been achieved with the new SMC based the strategy.
Keywords :
control system CAD; control system analysis computing; digital simulation; energy consumption; mathematics computing; power distribution control; power generation control; torque control; variable structure systems; velocity control; wind power; wind turbines; Matlab; Simulink; auxiliary power unit; energy distribution; energy production; energy utilization; generator torque control; global electrical energy consumption; power capacity; sliding mode controllers design; variable speed small wind turbine systems; wind power generation systems; wind turbine speed control; Control systems; Electric variables control; Energy consumption; Mathematical model; Optimal control; Production; Sliding mode control; Torque control; Wind energy generation; Wind turbines; Auxiliary power unit (APU); optimal efficiency operation; sliding mode controller (SMC); wind power generation systems (WPGS);
Conference_Titel :
Mechatronics and Automation, 2007. ICMA 2007. International Conference on
Conference_Location :
Harbin
Print_ISBN :
978-1-4244-0828-3
Electronic_ISBN :
978-1-4244-0828-3
DOI :
10.1109/ICMA.2007.4304165