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Mathematical modeling and fuzzy proportional–integral–derivative scheme to control the yaw motion of a wind turbine

Eduardo Campos‐Mercado, Luis F. Cerecero‐Natale, Octavio Garcia‐Salazar, Hugo Francisco Abundis‐Fong, David Wood

Year
2020
Citations
11
Access
Open access

Abstract

Abstract In this paper, we present a mathematical model and control strategy to regulate the yaw of a horizontal axis wind turbine. In order to obtain the dynamic equations of the yaw motion, the mathematical model is developed using the Euler–Lagrange formulation and considers the wind turbine as a manipulator robot with three degrees of freedom (DOF). A fuzzy proportional‐integral‐derivative (PID) controller is proposed to manipulate the yaw angle for power regulation. In addition, we have developed a low cost experimental platform to implement the designed controller to obtain experimental results for the dynamic behavior of the closed‐loop system.

Keywords

Control theory (sociology)Euler anglesPID controllerTurbineController (irrigation)Fuzzy logicYawEngineeringControl engineeringComputer science

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