Starting from the well known analytical formula for the eddy current losses in electrical steel laminations, saturation and edge effects are studied by means of 1D and 2D finite element models of a single lamination. A novel method for directly including the laminated core energy dissipation in a time stepped 2D model of a complete (rotating) machine is proposed. By way of example the method is applied to a tooth model with enforced flux waveforms
© 2018 IEEE. A new implementation of an iron-loss model for laminated magnetic cores in the MATLAB/S...
Publisher Copyright: CCBYIron losses in laser-cut toroidal samples of 12 mm thick steel laminations ...
The cores of electrical machines are generally punched and laminated to reduce the eddy current loss...
The correct estimation of iron losses is still a challenging task in the numerical analysis of elect...
A finite element homogenization method is proposed for the magetodynamic h-conform finite element fo...
In this paper, we propose an analytical method to compute the eddy-current loss in nonlinear thick s...
peer reviewedThis paper deals with a time-domain homogeniza- tion method for laminated cores and its...
In this paper, a test setup that emulates field conditions equivalent to the ones of the rotor of a ...
Purpose– The purpose of this paper is to implement and test a 1D eddy‐current model for laminated ir...
This thesis deals with the modeling of eddy currents in uninsulated laminations. A numerical model f...
Abstract—The simulation of eddy current losses in laminated iron cores by the finite element method ...
Abstract: The simulation of eddy current losses in laminated iron cores by the finite element method...
A new implementation of an iron-loss model for laminated magnetic cores in the MATLAB / Simulink env...
This thesis first explains the eddy current and the phenomenon of skin effect, where the resultant f...
Iron losses in laser-cut toroidal samples of 12 mm thick steel laminations used in large synchronous...
© 2018 IEEE. A new implementation of an iron-loss model for laminated magnetic cores in the MATLAB/S...
Publisher Copyright: CCBYIron losses in laser-cut toroidal samples of 12 mm thick steel laminations ...
The cores of electrical machines are generally punched and laminated to reduce the eddy current loss...
The correct estimation of iron losses is still a challenging task in the numerical analysis of elect...
A finite element homogenization method is proposed for the magetodynamic h-conform finite element fo...
In this paper, we propose an analytical method to compute the eddy-current loss in nonlinear thick s...
peer reviewedThis paper deals with a time-domain homogeniza- tion method for laminated cores and its...
In this paper, a test setup that emulates field conditions equivalent to the ones of the rotor of a ...
Purpose– The purpose of this paper is to implement and test a 1D eddy‐current model for laminated ir...
This thesis deals with the modeling of eddy currents in uninsulated laminations. A numerical model f...
Abstract—The simulation of eddy current losses in laminated iron cores by the finite element method ...
Abstract: The simulation of eddy current losses in laminated iron cores by the finite element method...
A new implementation of an iron-loss model for laminated magnetic cores in the MATLAB / Simulink env...
This thesis first explains the eddy current and the phenomenon of skin effect, where the resultant f...
Iron losses in laser-cut toroidal samples of 12 mm thick steel laminations used in large synchronous...
© 2018 IEEE. A new implementation of an iron-loss model for laminated magnetic cores in the MATLAB/S...
Publisher Copyright: CCBYIron losses in laser-cut toroidal samples of 12 mm thick steel laminations ...
The cores of electrical machines are generally punched and laminated to reduce the eddy current loss...