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The performance of two control strategies for floating wind turbines: lidar-assisted feedforward and multi-variable feedback

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1.
Guo F, Schlipf D, Lemmer F, u. a. The performance of two control strategies for floating wind turbines: lidar-assisted feedforward and multi-variable feedback. In: Journal of Physics: Conference Series. Bd. 2626. ; 2023:012005. doi:10.1088/1742-6596/2626/1/012005.
Guo, F. ., Schlipf, D. ., Lemmer, F. ., Raach, S. ., Özinan, U. ., Adam, R. ., & Choisnet, T. . (2023). The performance of two control strategies for floating wind turbines: lidar-assisted feedforward and multi-variable feedback. In Journal of Physics: Conference Series (Bd. 2626, S. 012005). http://doi.org/10.1088/1742-6596/2626/1/012005 (Original work published 2025)
Guo, Feng, David Schlipf, Frank Lemmer, Steffen Raach, Umut Özinan, Raphaël Adam, und Thomas Choisnet. (2025) 2023. „The Performance of Two Control Strategies for Floating Wind Turbines: Lidar-Assisted Feedforward and Multi-Variable Feedback“. In Journal of Physics: Conference Series, 2626:012005. doi:10.1088/1742-6596/2626/1/012005.
Guo, Feng u. a. „The Performance of Two Control Strategies for Floating Wind Turbines: Lidar-Assisted Feedforward and Multi-Variable Feedback“. Journal of Physics: Conference Series. Bd. 2626. N.p., 2023. 012005.
Guo, Feng, u. a. „The Performance of Two Control Strategies for Floating Wind Turbines: Lidar-Assisted Feedforward and Multi-Variable Feedback“. 2025. Journal of Physics: Conference Series, Bd. 2626, 1, 2023, S. 012005.

Details

  • Date Published

    oct
  • Volume

    2626
  • Number of Pages

    012005