The optimization of the geometry of an electrical machine is a complex task with many degrees of freedom. The biggest challenge is the optimization of the stator including the number of slots and winding design. Therefore, the magnetic saturation of the stator is fixed, and different winding configurations are chosen based on predefined criteria. The rotor of the five-phase motor is then optimized for selected electrical loading. The five-phase machine is expected to be operated under higher harmonic current injection; finding the ideal current distribution between both first and third harmonic components is part of the optimization process
The injection of a third harmonic current can improve the electromagnetic torque output of the five-...
The injection of a third harmonic current can improve the electromagnetic torque output of the five-...
The injection of a third harmonic current can improve the electromagnetic torque output of the five-...
One advantage of multi-phase machines is the possibility to use the third harmonic of the rotor flux...
One advantage of multi-phase machines is the possibility to use the third harmonic of the rotor flux...
The paper develops a strategy to enhance the torque development for a nine-phase PMSM with an asymme...
The increased energy demand and the need for electrical machines capable to deliver high torque and ...
The increased energy demand and the need for electrical machines capable to deliver high torque and ...
The increased energy demand and the need for electrical machines capable to deliver high torque and ...
One advantage of multi-phase machines is the possibility to use the third harmonic of the rotor flux...
This paper proposes a method to improve the output torque of a six-phase permanent-magnet synchronou...
Third harmonic voltage injection in the five-phase winding of electric AC machines is proposed for p...
Third harmonic voltage injection in the five-phase winding of electric AC machines is proposed for p...
Multiphase induction machines have the advantage of producing torque under different current harmoni...
The paper studies the impact of first and third current-harmonic repartition in a five-phase Permane...
The injection of a third harmonic current can improve the electromagnetic torque output of the five-...
The injection of a third harmonic current can improve the electromagnetic torque output of the five-...
The injection of a third harmonic current can improve the electromagnetic torque output of the five-...
One advantage of multi-phase machines is the possibility to use the third harmonic of the rotor flux...
One advantage of multi-phase machines is the possibility to use the third harmonic of the rotor flux...
The paper develops a strategy to enhance the torque development for a nine-phase PMSM with an asymme...
The increased energy demand and the need for electrical machines capable to deliver high torque and ...
The increased energy demand and the need for electrical machines capable to deliver high torque and ...
The increased energy demand and the need for electrical machines capable to deliver high torque and ...
One advantage of multi-phase machines is the possibility to use the third harmonic of the rotor flux...
This paper proposes a method to improve the output torque of a six-phase permanent-magnet synchronou...
Third harmonic voltage injection in the five-phase winding of electric AC machines is proposed for p...
Third harmonic voltage injection in the five-phase winding of electric AC machines is proposed for p...
Multiphase induction machines have the advantage of producing torque under different current harmoni...
The paper studies the impact of first and third current-harmonic repartition in a five-phase Permane...
The injection of a third harmonic current can improve the electromagnetic torque output of the five-...
The injection of a third harmonic current can improve the electromagnetic torque output of the five-...
The injection of a third harmonic current can improve the electromagnetic torque output of the five-...