This letter proposes a rotor flux amplitude reference generation strategy for doubly fed induction machine based wind turbines. It is specially designed to address perturbations, such as voltage dips, keeping controlled the torque of the wind turbine, and considerably reducing the stator and rotor over currents during faults. In addition, a direct torque control strategy that provides fast dynamic response accompanies the overall control of the wind turbine. Despite the fact that the proposed control does not totally eliminate the necessity of the typical crowbar protection for this kind of turbines, it eliminates the activation of this protection during low voltage dip
In this paper direct power control (DPC) strategy is applied to control a doubly fed induction gener...
Over the past few years, due to the shortage of fossil fuels and their unwanted environmental impact...
none4noThis paper deals with a protection and control strategy to enhance the low voltage ride throu...
The wind turbines based Doubly Fed Induction Generator (DFIG) is not able to support the voltage and...
This paper focuses the analysis on the control of doubly fed induction generator (DFIG) based high-p...
The wind turbines based Doubly Fed Induction Machine (DFIM) not able to support the voltage and the ...
Among all the different types of electric wind generators, those that are based on doubly fed induct...
The work presented in this communication, describes a solution for wind turbines using Double Fed In...
This paper presents different control strategies for a variable-speed wind energy conversion system ...
This paper presents a control strategy for wind turbines to enhance their fault ride-through capabil...
The energy production future is dominated by renewable energy sources driven by global warming probl...
Direct torque control (DТС) is a method of controlling electrical machines that are widely used, and...
The energy sector is evolving rapidly, namely due to the increasing importance of renewable energy s...
In the last 15 years, the use of doubly fed induction machines in modern variable-speed wind turbine...
The penetration levels of wind turbines (WTs) in power grid have significantly increased in the last...
In this paper direct power control (DPC) strategy is applied to control a doubly fed induction gener...
Over the past few years, due to the shortage of fossil fuels and their unwanted environmental impact...
none4noThis paper deals with a protection and control strategy to enhance the low voltage ride throu...
The wind turbines based Doubly Fed Induction Generator (DFIG) is not able to support the voltage and...
This paper focuses the analysis on the control of doubly fed induction generator (DFIG) based high-p...
The wind turbines based Doubly Fed Induction Machine (DFIM) not able to support the voltage and the ...
Among all the different types of electric wind generators, those that are based on doubly fed induct...
The work presented in this communication, describes a solution for wind turbines using Double Fed In...
This paper presents different control strategies for a variable-speed wind energy conversion system ...
This paper presents a control strategy for wind turbines to enhance their fault ride-through capabil...
The energy production future is dominated by renewable energy sources driven by global warming probl...
Direct torque control (DТС) is a method of controlling electrical machines that are widely used, and...
The energy sector is evolving rapidly, namely due to the increasing importance of renewable energy s...
In the last 15 years, the use of doubly fed induction machines in modern variable-speed wind turbine...
The penetration levels of wind turbines (WTs) in power grid have significantly increased in the last...
In this paper direct power control (DPC) strategy is applied to control a doubly fed induction gener...
Over the past few years, due to the shortage of fossil fuels and their unwanted environmental impact...
none4noThis paper deals with a protection and control strategy to enhance the low voltage ride throu...