Wind turbine integrated structural and LPV control design for improved closed-loop performance
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Publication:5745613
DOI10.1080/00207179.2012.679973zbMath1417.93232OpenAlexW1974048739MaRDI QIDQ5745613
Farzad A. Shirazi, Daniel Viassolo, Grigoriadis, Karolos M.
Publication date: 30 January 2014
Published in: International Journal of Control (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1080/00207179.2012.679973
Application models in control theory (93C95) (H^infty)-control (93B36) Control/observation systems governed by ordinary differential equations (93C15)
Related Items (10)
Parameter varying control of wind turbine smart rotor for structural load mitigation ⋮ Improved synthesis conditions for mixed H2/H∞ gain-scheduling control subject to uncertain scheduling parameters ⋮ Polynomial LPV approach to robust H∞ control of nonlinear sampled-data systems ⋮ Feedforward feedback pitch control for wind turbine based on feedback linearization with sliding mode and fuzzy PID algorithm ⋮ Implications of the degree of controllability of controlled plants in the sense of LQR optimal control ⋮ Wind turbine integrated structural and LPV control design for improved closed-loop performance ⋮ Robust control of wind turbines by using singular perturbation method and linear parameter varying model ⋮ Exponential stabilisation of nonlinear parameter-varying systems with applications to conversion flight control of a tilt rotor aircraft ⋮ Simultaneous sensor and actuator fault estimation for continuous-time polytopic LPV system ⋮ Fixed-time sliding mode control based plant/controller co-design of dual-motor driving system
Cites Work
- Unnamed Item
- Integrated damping parameter and control design in structural systems for \(\mathcal H^2\) and \(\mathcal H^{\infty}\) specifications
- Multi-disciplinary constrained optimization of wind turbines
- Structure/control optimization to improve the dynamic response of space structures
- Linear parameter varying control of wind turbines covering both partial load and full load conditions
- Optimal mix of passive and active control in structures
- Integrating structure and control design to achieve mixed H2/H performance
- Integrated design of structural and control systems with a homotopy like iterative method
- Wind turbine integrated structural and LPV control design for improved closed-loop performance
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