In high-speed and high-frequency electric machines, one of the major issues that impacts the performance and capability of a machine is the high-frequency eddy current losses in the windings. This work deals with AC winding losses in flat rectangular conductors. Aiming for eddy current loss mitigation, two different materials are investigated and compared for the same winding design, namely copper and aluminum. Using the finite element method (FEM), the conductor loss and current density behavior are simulated at the strand level. Further, in order to verify the simulated losses, the AC losses are measured and compared over a wide range of frequencies. Finally, recommendations are provided based on the obtained measurements to identify the ...
In this paper current displacement effects and subsequently ac copper losses in hairpin windings are...
In this paper, a fast finite element (FE)-based method for the calculation of eddy current losses in...
In recent years, the demand for high performance electrical machines that combine high power density...
In high-speed and high-frequency electric machines, one of the major issues that impacts the perform...
In high speed electrical machines, one of the main challenges that can be faced is the high frequenc...
none4noThis work provides an analysis of the impact on AC losses in hairpin conductors, provided by ...
In the last years, several resources have been employed to increase torque and power density values ...
Hairpin windings are becoming current/next generation solutions for traction motors of electric vehi...
International audienceThe selection of the optimal winding geometry in order to improve the efficien...
Nowadays, electrification in the transportation sector is one of the most viable solutions to reduce...
The hairpin winding configuration has been attracting attention as a solution to increase the power ...
When operating higher up in frequency, the copper losses in transformer windings will significantly ...
This work deals with an analytical approach aimed at accurately predicting Joule losses in innovativ...
Thanks to the development in fields of materials and power electronics, the use of high speed electr...
AC copper losses are very prominent in high speed electrical machines. Finite element method (FEM) c...
In this paper current displacement effects and subsequently ac copper losses in hairpin windings are...
In this paper, a fast finite element (FE)-based method for the calculation of eddy current losses in...
In recent years, the demand for high performance electrical machines that combine high power density...
In high-speed and high-frequency electric machines, one of the major issues that impacts the perform...
In high speed electrical machines, one of the main challenges that can be faced is the high frequenc...
none4noThis work provides an analysis of the impact on AC losses in hairpin conductors, provided by ...
In the last years, several resources have been employed to increase torque and power density values ...
Hairpin windings are becoming current/next generation solutions for traction motors of electric vehi...
International audienceThe selection of the optimal winding geometry in order to improve the efficien...
Nowadays, electrification in the transportation sector is one of the most viable solutions to reduce...
The hairpin winding configuration has been attracting attention as a solution to increase the power ...
When operating higher up in frequency, the copper losses in transformer windings will significantly ...
This work deals with an analytical approach aimed at accurately predicting Joule losses in innovativ...
Thanks to the development in fields of materials and power electronics, the use of high speed electr...
AC copper losses are very prominent in high speed electrical machines. Finite element method (FEM) c...
In this paper current displacement effects and subsequently ac copper losses in hairpin windings are...
In this paper, a fast finite element (FE)-based method for the calculation of eddy current losses in...
In recent years, the demand for high performance electrical machines that combine high power density...