| Titre : | Population-based design of surface-mounted permanent-magnet synchronous machines (2009) |
| Auteurs : | Cassimere, B. N., Auteur ; Sudhoff, S. D., Auteur |
| Type de document : | Article : texte imprimé |
| Dans : | IEEE transactions on energy conversion (Vol. 24 N° 2, Juin 2009) |
| Article en page(s) : | pp. 338 - 346 |
| Note générale : | energy conversion |
| Langues : | Anglais |
| Tags : | Genetic algorithms ; particle swarm optimisation ; permanent magnet machines ; synchronous torque |
| Résumé : | Permanent-magnet synchronous machines can be designed to obtain high efficiency and high torque density. Population-based optimization methods such as genetic algorithms and particle swarm optimization are gaining acceptance as a means of optimizing the design of this class of machines. This paper builds on the literature by utilizing a computationally efficient machine analysis appropriate for use with population-based optimization methods that enables the consideration of a significantly larger search space than previously reported in the literature. It is also unique in that the relative performance of different parameter encoding and objective function formulations are considered. |
| En ligne : | http://ieeexplore.ieee.org/xpl/articleDetails.jsp?arnumber=4957566&sortType%3Dasc_p_Sequence%26filter%3DAND%28p_IS_Number%3A4957563%29 |

