Wind turbine maximum power point tracking control based on unsupervised neural networks

被引:15
|
作者
Munoz-Palomeque, Eduardo [1 ]
Sierra-Garcia, J. Enrique [1 ]
Santos, Matilde [2 ]
机构
[1] Univ Burgos, Dept Electromech Engn, Burgos 09006, Spain
[2] Univ Complutense Madrid, Inst Knowledge Technol, Madrid, Spain
关键词
wind turbine; MPPT; radial basis function neural network; direct speed control; MPPT ALGORITHM; PI CONTROLLER; SYSTEM; STRATEGY;
D O I
10.1093/jcde/qwac132
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
The main control goal of a wind turbine (WT) is to produce the maximum energy in any operating region. When the wind speed is under its rated value, the control must aim at tracking the maximum power point of the best power curve for a specific WT. This is challenging due to the non-linear characteristics of the system and the environmental disturbances it is subjected to. Direct speed control (DSC) is one of the main techniques applied to address this problem. In this strategy, it is necessary to design a speed controller to adjust the generator torque so to follow the optimum generator speed. In this work, we improve the DSC by implementing this speed controller with a radial basis function neural network (NN). An unsupervised learning algorithm is designed to tune the weights of the NN so it learns the control law that minimizes the generator speed error. With this proposed unsupervised neural control methodology, the electromagnetic torque that allows the optimal power extraction is obtained, and thus the best power coefficient (C-p) values. The proposal is tested on the OpenFAST non-linear model of the National Renewable Energy Laboratory 1.5 MW WT. Simulation results prove the good performance of this neuro-control approach as it maintains the WT variables into the appropriate range and tracks the rated operation values. It has been compared with the controller included in OpenFAST giving up to 7.87% more power.
引用
收藏
页码:108 / 121
页数:14
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