This paper deals with the time-domain homogeniza- tion of multiturn windings in 3-D finite element (FE) models. An elementary two-dimensional (2-D) FE model allows for the global eddy-current characterization of the winding by means of dimensionless frequency and time-domain coefficients regarding skin and proximity effects. These coefficients are used in the FE model of the complete device. The 3-D homogenization method is validated by considering an axisymmetric 120-turn inductor for which a brute-force 2-D FE model (each turn is finely discretized) provides an accurate reference solution.status: publishe
peer reviewedIn this work, the error made by frequency domain homogenization of windings in 2-D ma...
The authors present a novel time-domain homogenization technique for laminated iron cores in three-d...
The authors present a novel nonlinear homogeniza- tion technique for laminated iron cores in 3D FE m...
In this paper the authors propose an original time- domain extension of the frequency-domain homogen...
This paper deals with the time-domain homogenization of multiturn windings in 3-D finite element (FE...
peer reviewedThis paper deals with eddy-current effects in the distributed winding of electrical mac...
In this paper, the authors deal with the finite-element (FE) modeling of eddy-current effects in for...
In this paper, an approach for the time-domain homogenization of foil windings in axisymmetric finit...
In this paper, the authors deal with the finite-element (FE) modeling of eddy-current effects in for...
A general approach for the frequency-domain homogenization of multiturn windings in two-dimensional ...
In this paper, the authors deal with the finite-element (FE) modeling of eddy-current effects in for...
The eddy-current effects in windings, i.e. skin and proximity effects, can be macroscopically modell...
In this paper, we propose an alternative time-domain approach for the homogenization of multiturn wi...
peer reviewedThis paper deals with time-domain homogenisation of multi-turn windings and laminated c...
In this work, the error made by frequency domain homogenization of windings in 2-D magnetodynamics i...
peer reviewedIn this work, the error made by frequency domain homogenization of windings in 2-D ma...
The authors present a novel time-domain homogenization technique for laminated iron cores in three-d...
The authors present a novel nonlinear homogeniza- tion technique for laminated iron cores in 3D FE m...
In this paper the authors propose an original time- domain extension of the frequency-domain homogen...
This paper deals with the time-domain homogenization of multiturn windings in 3-D finite element (FE...
peer reviewedThis paper deals with eddy-current effects in the distributed winding of electrical mac...
In this paper, the authors deal with the finite-element (FE) modeling of eddy-current effects in for...
In this paper, an approach for the time-domain homogenization of foil windings in axisymmetric finit...
In this paper, the authors deal with the finite-element (FE) modeling of eddy-current effects in for...
A general approach for the frequency-domain homogenization of multiturn windings in two-dimensional ...
In this paper, the authors deal with the finite-element (FE) modeling of eddy-current effects in for...
The eddy-current effects in windings, i.e. skin and proximity effects, can be macroscopically modell...
In this paper, we propose an alternative time-domain approach for the homogenization of multiturn wi...
peer reviewedThis paper deals with time-domain homogenisation of multi-turn windings and laminated c...
In this work, the error made by frequency domain homogenization of windings in 2-D magnetodynamics i...
peer reviewedIn this work, the error made by frequency domain homogenization of windings in 2-D ma...
The authors present a novel time-domain homogenization technique for laminated iron cores in three-d...
The authors present a novel nonlinear homogeniza- tion technique for laminated iron cores in 3D FE m...