Application of Sliding Mode Control for Wind Power Generation System

Author:

Zhao Zheng Yin1,Wang Wu1

Affiliation:

1. Xu Chang University

Abstract

The wind power generation system have strong nonlinear characteristics with many uncertain factors, which was hard to be controlled exactly by traditional controllers and the sliding mode control was proposed, the sliding surface was selected, the equivalent controller and sweithcing controller was designed. The wind power generation system was analyzed and the mathematical models of aerodynamics, drive train and electromagnetic subsystem were created. The control strategy was applied into wind power generation system with MATLAB/Simulink platform, and the simulation result shows this model is of more important significance on researching the power characteristic and control performance for power generation system, the sliding mode control with high power tracking performance, which can effectively implement maximum energy capture.

Publisher

Trans Tech Publications, Ltd.

Reference9 articles.

1. XIE Da, ZHANG Yan-chi, ZHANG Qi, et al. A Large-scale Wind Power Generation Simulation and Testing System, implemenration of hardware and software system[J]. Research and Exploration in Laboratory, 2009, 28(7):15-18.

2. DONG Lei, WANG Li-jie, GAO Shuang, LIAO Xiaozhong. Modeling and analysis of prediction of wind power generation in the large wind farm based on chaotic time series. TRANSACTIONS OF CHINA ELECTROTECHNICAL SOCIETY, 2008(12): pp.125-129.

3. ZHANG Tao, JIANG Jing-ping, ZHANG Guo-hong. Feedback linearization control of permanent magnet synchronous motor system[J]. Proceedings of the CSEE, 2001, 21(6): 40-43.

4. WANG WU. Adaptive neuron sliding mode control for inverted pendulum. 2010 2nd International Conference on Computer Engineering and Technology (ICCET2010) , 2010, VOL 1, pp.135-138.

5. MENG Tao, JI Zhi-cheng. Two-frequency-loop control for wind energy conversion system based on sliding mode control [J]. Electric Machines and Control, 2009, (11): 152-156.

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