The hairpin winding configuration has been attracting attention as a solution to increase the power density of electric vehicle motors by enhancing the slot-filling factor. However, this winding configuration brings high AC losses during high-speed operation and we require new approaches to tackle this challenge. This paper considers reducing AC losses by proposing two main methods: correct transposition of conductors in parallel paths, and enhancing the number of conductor layers in a slot. First, the proper connection of conductors in parallel paths is considered, and the essential rules for this purpose are described. Next, the paper uses a numerical approach to deal with the effect of incorrect conductor transposition in winding paths o...
Interior permanent magnet (IPM) machines with hairpin windings have attracted significant attention ...
The rapidly increasing demand on power density levels of electric vehicle (EV) drive systems is push...
In this paper, the AC copper losses in classical random windings are investigated and mitigated usin...
The hairpin winding configuration has been attracting attention as a solution to increase the power ...
Nowadays, electrification in the transportation sector is one of the most viable solutions to reduce...
Abstract— Nowadays, electrification in the transportation sector is one of the most viable solutions...
Compared to traditional windings, hairpin windings feature higher fill factors and increased robustn...
© 1972-2012 IEEE. In the design of electrical machines, the increase in power density has become one...
In the last years, several resources have been employed to increase torque and power density values ...
This work deals with an analytical approach aimed at accurately predicting Joule losses in innovativ...
Nowadays, one of the key challenges in transport electrification is the reduction of components’ siz...
In recent years, the demand for high performance electrical machines that combine high power density...
This paper analyses how the type of winding affects the current distribution and power losses in arm...
This work deals with an analytical approach aimed at accurately predicting Joule losses in innovativ...
In high performance electric machines, the increase of fundamental frequency leads to additional los...
Interior permanent magnet (IPM) machines with hairpin windings have attracted significant attention ...
The rapidly increasing demand on power density levels of electric vehicle (EV) drive systems is push...
In this paper, the AC copper losses in classical random windings are investigated and mitigated usin...
The hairpin winding configuration has been attracting attention as a solution to increase the power ...
Nowadays, electrification in the transportation sector is one of the most viable solutions to reduce...
Abstract— Nowadays, electrification in the transportation sector is one of the most viable solutions...
Compared to traditional windings, hairpin windings feature higher fill factors and increased robustn...
© 1972-2012 IEEE. In the design of electrical machines, the increase in power density has become one...
In the last years, several resources have been employed to increase torque and power density values ...
This work deals with an analytical approach aimed at accurately predicting Joule losses in innovativ...
Nowadays, one of the key challenges in transport electrification is the reduction of components’ siz...
In recent years, the demand for high performance electrical machines that combine high power density...
This paper analyses how the type of winding affects the current distribution and power losses in arm...
This work deals with an analytical approach aimed at accurately predicting Joule losses in innovativ...
In high performance electric machines, the increase of fundamental frequency leads to additional los...
Interior permanent magnet (IPM) machines with hairpin windings have attracted significant attention ...
The rapidly increasing demand on power density levels of electric vehicle (EV) drive systems is push...
In this paper, the AC copper losses in classical random windings are investigated and mitigated usin...