Interior permanent magnet (IPM) machines with hairpin windings have attracted significant attention in EV applications owing to their low DC resistance and excellent thermal capabilities. In this paper, we present a comprehensive investigation of AC winding losses in IPM machines for traction applications, including analytical modeling, the influence of design parameters, and finite element (FE) verification. The proposed analytical model can predict the trends in AC winding losses for any number of bar conductors and slot/pole combinations. The results of the parametric study, obtained via the analytical model, are presented to examine the effects of key design parameters, such as conductor width and height, phase arrangement, and slot-per...
This work deals with an analytical approach aimed at accurately predicting Joule losses in innovativ...
In this paper current displacement effects and subsequently ac copper losses in hairpin windings are...
This paper describes an analytical approach for calculating the stator iron loss for multiple-barrie...
In recent years, the demand for high performance electrical machines that combine high power density...
Nowadays, electrification in the transportation sector is one of the most viable solutions to reduce...
In the last years, several resources have been employed to increase torque and power density values ...
Stator winding structure and its manufacturing in permanent magnet synchronous machines (PMSM) is th...
Abstract— Nowadays, electrification in the transportation sector is one of the most viable solutions...
The hairpin winding configuration has been attracting attention as a solution to increase the power ...
Interior permanent magnet (IPM) machines and non-overlapping concentrated windings (CW) are two desi...
This paper presents a comparison of 30/8 and 12/8 AC permanent magnet motors with distributed (DW) a...
This research focuses on the electromagnetic design of permanent magnet (PM) machines in terms of th...
This paper compares the characteristics of Interior Permanent Magnet Synchronous Motor (IPMSM) equip...
In high speed electrical machines, one of the main challenges that can be faced is the high frequenc...
Compared to traditional windings, hairpin windings feature higher fill factors and increased robustn...
This work deals with an analytical approach aimed at accurately predicting Joule losses in innovativ...
In this paper current displacement effects and subsequently ac copper losses in hairpin windings are...
This paper describes an analytical approach for calculating the stator iron loss for multiple-barrie...
In recent years, the demand for high performance electrical machines that combine high power density...
Nowadays, electrification in the transportation sector is one of the most viable solutions to reduce...
In the last years, several resources have been employed to increase torque and power density values ...
Stator winding structure and its manufacturing in permanent magnet synchronous machines (PMSM) is th...
Abstract— Nowadays, electrification in the transportation sector is one of the most viable solutions...
The hairpin winding configuration has been attracting attention as a solution to increase the power ...
Interior permanent magnet (IPM) machines and non-overlapping concentrated windings (CW) are two desi...
This paper presents a comparison of 30/8 and 12/8 AC permanent magnet motors with distributed (DW) a...
This research focuses on the electromagnetic design of permanent magnet (PM) machines in terms of th...
This paper compares the characteristics of Interior Permanent Magnet Synchronous Motor (IPMSM) equip...
In high speed electrical machines, one of the main challenges that can be faced is the high frequenc...
Compared to traditional windings, hairpin windings feature higher fill factors and increased robustn...
This work deals with an analytical approach aimed at accurately predicting Joule losses in innovativ...
In this paper current displacement effects and subsequently ac copper losses in hairpin windings are...
This paper describes an analytical approach for calculating the stator iron loss for multiple-barrie...