{"id":{"repo_id":"strathclyde","oai_identifier":"oai:strathclyde:bc386j22w"},"canonical_url":"https://search.dev.ndltd.org/etd/strathclyde/oai:strathclyde:bc386j22w","repository":{"repo_id":"strathclyde","name":"University of Strathclyde","base_url":"https://stax.strath.ac.uk/catalog/oai"},"display":{"title":"Full envelope wind turbine controller design for power regulation and tower load reduction","abstract":"The main objective of this thesis is to design controllers for a 2MW wind turbine for power regulation and tower load reduction. Due to the highly stochastic nature of the wind, a wind turbine is exposed to strongly varying loads. More specifically tower loads are a major concern and there is little literature proposing solutions towards their mitigation. One of the objectives of the operation of a wind turbine is to maximize its energy capture in below rated wind speeds through the controller. A thorough assessment of what is possible in a modern MW scale wind turbine is undertaken in this thesis. A full envelope single input single output controller is designed to be used as a benchmark for comparison of the newly proposed coordinating controller which successfully mitigates tower fatigue loads. The design of the newly proposed coordinated controller is thoroughly explored and tested.","abstract_html":"The main objective of this thesis is to design controllers for a 2MW wind turbine for power regulation and tower load reduction. Due to the highly stochastic nature of the wind, a wind turbine is exposed to strongly varying loads. More specifically tower loads are a major concern and there is little literature proposing solutions towards their mitigation. One of the objectives of the operation of a wind turbine is to maximize its energy capture in below rated wind speeds through the controller. A thorough assessment of what is possible in a modern MW scale wind turbine is undertaken in this thesis. A full envelope single input single output controller is designed to be used as a benchmark for comparison of the newly proposed coordinating controller which successfully mitigates tower fatigue loads. 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