In this paper, the AC copper losses in classical random windings are investigated and mitigated using several techniques across a range of permanent magnet synchronous motor designs. At high operating frequencies, AC copper losses can represent a substantial share of the total loss in electrical machines, thus, reducing the machine’s overall performance, and increasing the thermal loading. Recently, different approaches for modelling AC copper losses have been proposed. This paper utilises simulation software to quantify the expected AC losses in six different propulsion motor designs. The motor designs are then modified to reduce the AC winding losses through the implementation of five different methods. Using two-dimensional finite elemen...
Proximity and additional eddy-current losses can be difficult to calculate and if there are parallel...
This thesis presents novel methods for AC copper loss calculation and analysis, and investigates the...
In recent years, the hairpin winding flat wire motor has received more and more attention because of...
In this paper, the AC copper losses in classical random windings are investigated and mitigated usin...
In this paper, the AC copper losses in classical random windings are investigated and mitigated usin...
In high performance electric machines, the increase of fundamental frequency leads to additional los...
Analysis of AC copper losses in electrical machines is still a challenging task. Due to high utiliza...
Today, an extensive electrification is occurring in all industrial sectors, with a special interest ...
Today, an extensive electrification is occurring in all industrial sectors, with a special interest ...
© 1972-2012 IEEE. In the design of electrical machines, the increase in power density has become one...
Nowadays, one of the challenges in transport electrification is the reduction of the components’ siz...
In recent years, the demand for high performance electrical machines that combine high power density...
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...
This paper analyses how the type of winding affects the current distribution and power losses in arm...
Proximity and additional eddy-current losses can be difficult to calculate and if there are parallel...
This thesis presents novel methods for AC copper loss calculation and analysis, and investigates the...
In recent years, the hairpin winding flat wire motor has received more and more attention because of...
In this paper, the AC copper losses in classical random windings are investigated and mitigated usin...
In this paper, the AC copper losses in classical random windings are investigated and mitigated usin...
In high performance electric machines, the increase of fundamental frequency leads to additional los...
Analysis of AC copper losses in electrical machines is still a challenging task. Due to high utiliza...
Today, an extensive electrification is occurring in all industrial sectors, with a special interest ...
Today, an extensive electrification is occurring in all industrial sectors, with a special interest ...
© 1972-2012 IEEE. In the design of electrical machines, the increase in power density has become one...
Nowadays, one of the challenges in transport electrification is the reduction of the components’ siz...
In recent years, the demand for high performance electrical machines that combine high power density...
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...
This paper analyses how the type of winding affects the current distribution and power losses in arm...
Proximity and additional eddy-current losses can be difficult to calculate and if there are parallel...
This thesis presents novel methods for AC copper loss calculation and analysis, and investigates the...
In recent years, the hairpin winding flat wire motor has received more and more attention because of...