Title :
Multiphysics Design Methodology of Permanent-Magnet Synchronous Motors
Author :
Makni, Z.. ; Besbes, M. ; Marchand, C.
Author_Institution :
Univ. Paris VI et XI, Paris
fDate :
7/1/2007 12:00:00 AM
Abstract :
The contribution of powerful numerical calculation methods in the design procedure of electrical actuators is usually restricted to the analysis of structures with known geometric dimensions. This paper describes a computer-aided design tool with a multiphysics design methodology starting from datasheet specifications. It is operational from the first design phases due to the association of analytical and numerical approaches that are performed by the coupling of two software tools. The analytical study associates a coupled electromagnetic-thermal model with a gradient optimization algorithm and provides a quick first solution. This solution is then optimized, according to other criteria, by a further numerical study that is based on a finite-element model that is linked to a simplex algorithm. The vibratory behavior of the obtained solution is finally studied using modal analysis. This methodology is applied to design a permanent-magnet synchronous machine.
Keywords :
CAD; electric actuators; finite element analysis; modal analysis; permanent magnet motors; synchronous motors; computer-aided design tool; electrical actuators; electromagnetic-thermal model; finite-element model; gradient optimization algorithm; modal analysis; multiphysics design methodology; numerical calculation methods; permanent-magnet synchronous machine; permanent-magnet synchronous motors; simplex algorithm; Actuators; Algorithm design and analysis; Coupled mode analysis; Design automation; Design methodology; Electromagnetic analysis; Electromagnetic coupling; Performance analysis; Software tools; Synchronous motors; Coupled model; design methodology; optimization; thermal calculation; vibratory behavior;
Journal_Title :
Vehicular Technology, IEEE Transactions on
DOI :
10.1109/TVT.2007.896981