Feedback-Feedforward Individual Pitch Control Design For Wind Turbines With Uncertain Measurements

2019 AMERICAN CONTROL CONFERENCE (ACC)(2019)

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Abstract
As the diameters of wind turbine rotors increase, the loads across the rotors are becoming more uneven due to inhomogeneous wind fields. Therefore, more advanced passive or active load reduction techniques are introduced to mitigate these uneven loads. Furthermore, measuring the disturbance can help to improve the control performance. This paper first examines how robust stability and performance are affected by uncertain sensor measurements when an integrator-based feedback is extended with an inversion-based feedforward individual pitch controller with similar bandwidth. A fixed-structured H-infinity feedback-feedforward controller is proposed. The proposed feedback-feedforward controller ensures robust stability and performance and achieves better load reduction than a classical integrator-based feedback controller combined with inversion-based feedforward controller.
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Key words
feedback-feedforward individual pitch control design,uncertain measurements,inhomogeneous wind fields,advanced passive load reduction techniques,active load reduction techniques,uneven loads,control performance,robust stability,uncertain sensor measurements,inversion-based feedforward individual pitch controller,feedback-feedforward controller,classical integrator-based feedback controller,inversion-based feedforward controller,wind turbine rotors
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