This study discusses strategies for the design of permanent magnet motors (PMMs) exploiting two-dimensional (2D) and 3D field models. Five most common methodologies are compared and errors arising from 2D classical models considered. Examples comparing 2D and 3D results are presented and discussed for two selected types of motors. An approach has been put forward which allows the accuracy of classical 2D models to be improved by introducing correction coefficients arising from preliminary 3D simulations. A possibility of employing quasi-3D models has also been explored for the design and analysis of PMMs with the stator and rotor lamination packets of different lengths. Comparative analysis of results has been provided arising from the 2D a...
The paper provides an overview of the modern field simulation techniques available to assist in the ...
Analytical approaches, if possible, are suggested for saving the simulation time in the design stage...
This paper proposes an analytical model that considers the torque characteristics and results in an ...
The paper focuses on methodologies for field simulation in magnetically linear devices using an exam...
In this paper, four different modelling techniques for permanent magnet (PM) machines are compared ...
Three-dimensional (3D) finite element (FE) modelling of axial flux permanent magnet (AFPM) motors is...
This paper provides comparative analysis between 2-D and 3-D numerical modeling of electromechanical...
International audienceA Partitioned Stator-Flux Reversal Permanent Magnet Machine (PS-FRPMM) is a ne...
In this paper, an overview of analytical techniques for the modeling of linear and planar permanent-...
AbstractThere has always been doubt on the accuracy of 2D analysis of small electric machines. To in...
Permanent magnet motors have outstanding performance for applications such as industrial robots, com...
This paper concerns the superposition of twodimensional semi-analytical models to model three-dimens...
In industry, the most frequently used motors are induction motors (IMs), reluctance motors, and perm...
This paper investigates the influence of finite-element (FE) mesh when computing eddy currents in ma...
Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Compute...
The paper provides an overview of the modern field simulation techniques available to assist in the ...
Analytical approaches, if possible, are suggested for saving the simulation time in the design stage...
This paper proposes an analytical model that considers the torque characteristics and results in an ...
The paper focuses on methodologies for field simulation in magnetically linear devices using an exam...
In this paper, four different modelling techniques for permanent magnet (PM) machines are compared ...
Three-dimensional (3D) finite element (FE) modelling of axial flux permanent magnet (AFPM) motors is...
This paper provides comparative analysis between 2-D and 3-D numerical modeling of electromechanical...
International audienceA Partitioned Stator-Flux Reversal Permanent Magnet Machine (PS-FRPMM) is a ne...
In this paper, an overview of analytical techniques for the modeling of linear and planar permanent-...
AbstractThere has always been doubt on the accuracy of 2D analysis of small electric machines. To in...
Permanent magnet motors have outstanding performance for applications such as industrial robots, com...
This paper concerns the superposition of twodimensional semi-analytical models to model three-dimens...
In industry, the most frequently used motors are induction motors (IMs), reluctance motors, and perm...
This paper investigates the influence of finite-element (FE) mesh when computing eddy currents in ma...
Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Compute...
The paper provides an overview of the modern field simulation techniques available to assist in the ...
Analytical approaches, if possible, are suggested for saving the simulation time in the design stage...
This paper proposes an analytical model that considers the torque characteristics and results in an ...