DocumentCode
1774123
Title
An improved method of maximum peak power tracking strategy for wind power convention system
Author
Chen Ran ; Pan Aiqiang ; Jin Jiapei ; Luo Ling ; Chen Tiantian
Author_Institution
Electr. Power Res. Inst., State Grid Corp. of China, Shanghai, China
fYear
2014
fDate
23-26 Sept. 2014
Firstpage
160
Lastpage
164
Abstract
The turbine speed loop adjustment is key link of the designing of the controller for the fixed pitch variable speed wind energy conversion systems (WECS). Because of the strong nonlinear, big inertia and mechanical damping characteristics, it´s difficult to designing the controller of the wind power systems. In this paper, a small signal model is present, and based on the analyzing; a wind turbine speed loop regulator is designed. Then, a method of tracking the peak power conversion system is proposed, which is independent of the turbine parameters and air density. At last, simulation system is built, and the results of the simulation experiments show that, the performance of the controller algorithm meet the requirements of the MPPT without wind measurement.
Keywords
control system synthesis; damping; maximum power point trackers; nonlinear control systems; power generation control; velocity control; wind power plants; wind turbines; MPPT requirements; WECS; big inertia characteristics; controller design; fixed pitch variable speed wind energy conversion systems; maximum peak power tracking strategy; mechanical damping characteristics; small signal model; strong nonlinear characteristics; turbine speed loop adjustment; wind power systems; wind turbine speed loop regulator; Algorithm design and analysis; Blades; Control systems; Magnetomechanical effects; Rotors; Wind turbines; Wind power generation; peak power point tracking; speed control mode; turbine characteristics; wind power conversion system; wind turbine simulator;
fLanguage
English
Publisher
ieee
Conference_Titel
Electricity Distribution (CICED), 2014 China International Conference on
Conference_Location
Shenzhen
Type
conf
DOI
10.1109/CICED.2014.6991685
Filename
6991685
Link To Document