Maximum Power Point Tracking of Wind Energy Conversion Systems Based on Sliding Mode Extremum Seeking Control

Tinglong Pan, Z. Ji, Zhenhua Jiang
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引用次数: 89

Abstract

This paper presents a novel maximum power point tracking (MPPT) control method for variable-speed constant-frequency wind energy conversion systems (WECS). The proposed tracking method combines the ideas of sliding mode (SM) control and extremum seeking control (ESC). The only input needed in this method is the output active power of the generator. It avoids some difficult problems in traditional tracking algorithms, such as measuring the wind velocity, needing wind-turbine model and parameters, and detecting the gradient of power vs. rotor speed. The proposed method is tested on a double fed induction generator based wind energy conversion system. The back-to-back converters connected to the generator adopt the vector control method. The simulation model of an example WECS is established in MATLAB. The reference input of speed loop in the vector control is the optimal result resulting from the MPPT based on sliding mode ESC. Simulation results confirm the validity of this method.
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基于滑模极值寻优控制的风能转换系统最大功率点跟踪
提出了一种新的变速恒频风力发电系统最大功率点跟踪控制方法。该跟踪方法结合了滑模控制和极值寻优控制的思想。这种方法所需要的唯一输入就是发电机的输出有功功率。它避免了传统跟踪算法中测量风速、需要风力机模型和参数、检测功率与转子转速梯度等难题。在基于双馈感应发电机的风能转换系统上进行了试验。与发电机相连的背靠背变流器采用矢量控制方式。在MATLAB中建立了一个实例WECS的仿真模型。矢量控制中速度环的参考输入是基于滑模ESC的MPPT的最优结果。仿真结果验证了该方法的有效性。
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