Title :
Doubly-Fed Wind Turbine Mathematical Model and Simulation
Author :
Chunyue Wang ; Zhouxing Fu ; Wei Huang ; Yifan Liu ; Shihe Zhang
Author_Institution :
Sch. of Electr. & Control Eng., Xi´an Univ. of Sci. & Technol., Xi´an, China
Abstract :
With the deepening of the concept of sustainable development, wind power as a renewable energy has been rapid developed. The simulation of wind power generation system in wind power system analysis, power analysis and power grid energy analysis in both played a very important role. In this paper, by using the MATLAB software, the power electronic system mathematical model related to the wind speed, wind wheel, driving mechanism, power generator, and wind power is established and the research of simulation is carried out, which are used for analysis of simulation results. This paper introduces the control technology of wind turbine, which is mainly about variable pitch control and generator speed control, and this paper carries out the simulation of pitch control system and below-rated and above-rated wind speed variable speed wind power system by using the software of MATLAB. It also makes the simulation about doubly-fed induction generator DFIG decoupling control.
Keywords :
angular velocity control; asynchronous generators; machine control; mathematics computing; power generation control; power grids; power system simulation; wind power plants; wind turbines; Matlab software; above-rated wind speed variable speed wind power system; below-rated wind speed variable speed wind power system; doubly-fed induction generator DFIG decoupling control; doubly-fed wind turbine mathematical model; doubly-fed wind turbine mathematical simulation; driving mechanism; generator speed control; pitch control system simulation; power analysis; power electronic system mathematical model; power generator; power grid energy analysis; renewable energy; sustainable development; variable pitch control; wind power generation system; wind power system analysis; wind speed; wind turbine control technology; wind wheel; Analytical models; Generators; Mathematical model; Rotors; Wind power generation; Wind speed; Wind turbines; Doubly-fed generator; Generator Model; MATLAB simulation software; Wind Turbine Control Systems; Wind power generation system;
Conference_Titel :
Computer, Consumer and Control (IS3C), 2014 International Symposium on
Conference_Location :
Taichung
DOI :
10.1109/IS3C.2014.210