In this work, a control-oriented wind farm model is validated against SCADA data from a typical on-shore wind farm, without additional instrumentation available. The comparison of model-predicted and measured power deficits due to wake impingement shows good agreement. Furthermore, the model is used to compute optimum yaw misalignments for yaw-induced wake steering, leading to an estimated 1.7% increase in annual energy production by mitigation of wake losses. Results show that wake steering based on standard SCADA data, which is usually available in operational wind farms, has promising potential for open-loop model-based wind farm control
Wind farms experience significant efficiency losses due to the aerodynamic interaction between turbi...
As the global installed capacity of wind energy expands, the interest towards improving the efficien...
The intentional yaw misalignment of leading, upwind turbines in a wind farm, termed wake steering, h...
In this work, a control-oriented wind farm model is validated against SCADA data from a typical on-s...
In this work, a control-oriented wind farm model is validated against SCADA data from a typical on-s...
In this work, a control-oriented wind farm model is validated against SCADA data from a typical on-s...
In this work, a control-oriented wind farm model is validated against SCADA data from a typical on-s...
In this work, a control-oriented wind farm model is validated against SCADA data from a typical on-s...
Wind farms experience significant efficiency losses due to the aerodynamic interaction between turbi...
University of Minnesota M.S. thesis. August 2020. Major: Aerospace Engineering and Mechanics. Adviso...
Aerodynamic wake interaction between commercial scale wind turbines can be a significant source of p...
Open-loop wake steering inconsistently improves the energy yield of wind farms in field experiments ...
Open-loop wake steering inconsistently improves the energy yield of wind farms in field experiments ...
For offshore wind farms, wake effects are among the largest sources of losses in energy production....
Methods for wind farm power optimization through the use of wake steering often rely on engineering ...
Wind farms experience significant efficiency losses due to the aerodynamic interaction between turbi...
As the global installed capacity of wind energy expands, the interest towards improving the efficien...
The intentional yaw misalignment of leading, upwind turbines in a wind farm, termed wake steering, h...
In this work, a control-oriented wind farm model is validated against SCADA data from a typical on-s...
In this work, a control-oriented wind farm model is validated against SCADA data from a typical on-s...
In this work, a control-oriented wind farm model is validated against SCADA data from a typical on-s...
In this work, a control-oriented wind farm model is validated against SCADA data from a typical on-s...
In this work, a control-oriented wind farm model is validated against SCADA data from a typical on-s...
Wind farms experience significant efficiency losses due to the aerodynamic interaction between turbi...
University of Minnesota M.S. thesis. August 2020. Major: Aerospace Engineering and Mechanics. Adviso...
Aerodynamic wake interaction between commercial scale wind turbines can be a significant source of p...
Open-loop wake steering inconsistently improves the energy yield of wind farms in field experiments ...
Open-loop wake steering inconsistently improves the energy yield of wind farms in field experiments ...
For offshore wind farms, wake effects are among the largest sources of losses in energy production....
Methods for wind farm power optimization through the use of wake steering often rely on engineering ...
Wind farms experience significant efficiency losses due to the aerodynamic interaction between turbi...
As the global installed capacity of wind energy expands, the interest towards improving the efficien...
The intentional yaw misalignment of leading, upwind turbines in a wind farm, termed wake steering, h...