Wind turbine conversion systems require feedback control to achieve reliable wind turbine operation and stable current supply. A robust linear parameter varying (LPV) controller is proposed to reduce the structural loads and improve the power extraction of a horizontal axis wind turbine operating in both the partial load and the full load regions. The LPV model is derived from the wind turbine state space models extracted by FAST (fatigue, aerodynamics, structural, and turbulence) code linearization at different operating points. In order to assure a smooth transition between the two regions, appropriate frequency-dependent varying scaling parametric weighting functions are designed in the LPV control structure. The solution of a set of lin...
This paper describes the design of a self-scheduled current controller for doubly-fed induction gene...
Linear aeroelastic models used for stability analysis of wind turbines are commonly of very high ord...
We present an application of L1 adaptive output feedback control design to wind turbine collective p...
Active power control (APC) refers to a mode of operation where the wind turbine tracks a desired pow...
This paper deals with the control of a variable speed, pitch regulated wind turbine in the whole pla...
Abstract High performance and reliability are required for wind turbines to be competitive within th...
High performance and reliability are required for wind turbines to be competitive within the energy ...
University of Minnesota Ph.D. dissertation.July 2016. Major: Mechanical Engineering. Advisor: Peter...
This paper focuses on the active power control of wind turbines. Modern grid codes increasingly dema...
This paper considers the design of linear parameter varying (LPV) controllers for wind turbines in o...
This paper considers the control of wind turbines using an LPV design technique. The controller desi...
This paper addresses the design and comparison of active and passive fault-tolerant linear parameter...
This paper deals with linear parameter-varying (LPV) modeling and output-feedback H1 control design ...
Abstract—This paper addresses the design and comparison of active and passive fault-tolerant linear ...
This paper addresses the control of a variable-speed variable-pitch wind turbine in the whole wind s...
This paper describes the design of a self-scheduled current controller for doubly-fed induction gene...
Linear aeroelastic models used for stability analysis of wind turbines are commonly of very high ord...
We present an application of L1 adaptive output feedback control design to wind turbine collective p...
Active power control (APC) refers to a mode of operation where the wind turbine tracks a desired pow...
This paper deals with the control of a variable speed, pitch regulated wind turbine in the whole pla...
Abstract High performance and reliability are required for wind turbines to be competitive within th...
High performance and reliability are required for wind turbines to be competitive within the energy ...
University of Minnesota Ph.D. dissertation.July 2016. Major: Mechanical Engineering. Advisor: Peter...
This paper focuses on the active power control of wind turbines. Modern grid codes increasingly dema...
This paper considers the design of linear parameter varying (LPV) controllers for wind turbines in o...
This paper considers the control of wind turbines using an LPV design technique. The controller desi...
This paper addresses the design and comparison of active and passive fault-tolerant linear parameter...
This paper deals with linear parameter-varying (LPV) modeling and output-feedback H1 control design ...
Abstract—This paper addresses the design and comparison of active and passive fault-tolerant linear ...
This paper addresses the control of a variable-speed variable-pitch wind turbine in the whole wind s...
This paper describes the design of a self-scheduled current controller for doubly-fed induction gene...
Linear aeroelastic models used for stability analysis of wind turbines are commonly of very high ord...
We present an application of L1 adaptive output feedback control design to wind turbine collective p...