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<dc:creator>Serrano, Carlos</dc:creator>
<dc:creator>Sierra Garcia, Jesús Enrique</dc:creator>
<dc:creator>Santos, Matilde</dc:creator>
<dc:date>2022-11</dc:date>
<dc:description>Floating offshore wind turbines (FOWTs) are systems with complex and highly nonlinear&#xd;
dynamics; they are subjected to heavy loads, making control with classical strategies a challenge. In&#xd;
addition, they experience vibrations due to wind and waves. Furthermore, the control of the blade&#xd;
angle itself may generate vibrations. To address this issue, in this work we propose the design of&#xd;
an intelligent control system based on fuzzy logic to maintain the rated power of an FOWT while&#xd;
reducing the vibrations. A gain scheduling incremental proportional–derivative fuzzy controller is&#xd;
tuned by genetic algorithms (GAs) and combined with a fuzzy-lookup table to generate the pitch&#xd;
reference. The control gains optimized by the GA are stored in a database to ensure a proper operation&#xd;
for different wind and wave conditions. The software Matlab/Simulink and the simulation tool FAST&#xd;
are used. The latter simulates the nonlinear dynamics of a real 5 MW barge-type FOWT with irregular&#xd;
waves. The hybrid control strategy has been evaluated against the reference baseline controller&#xd;
embedded in FAST in different environmental scenarios. The comparison is assessed in terms of&#xd;
output power and structure stability, with up to 23% and 33% vibration suppression rate for tower&#xd;
top displacement and platform pitch, respectively, with the new control scheme. Fatigue damage&#xd;
equivalent load (DEL) of the blades has been also estimated with satisfactory results.</dc:description>
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<dc:identifier>http://hdl.handle.net/10259/7569</dc:identifier>
<dc:language>eng</dc:language>
<dc:publisher>MDPI</dc:publisher>
<dc:title>Hybrid Optimized Fuzzy Pitch Controller of a Floating Wind Turbine with Fatigue Analysis</dc:title>
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