Computational electromagnetics for design optimisation: the state of the art and conjectures for the future

Author:

Sykulski J.

Abstract

Computational electromagnetics for design optimisation: the state of the art and conjectures for the futureThe paper reviews the state of the art in modern field simulation techniques available to assist in the design and performance prediction of electromechanical and electromagnetic devices. Commercial software packages, usually exploiting finite element and/or related techniques, provide advanced and reliable tools for every-day use in the design office. At the same time Computational Electromagnetics continues to be a thriving area of research with emerging new techniques and methods, in particular for multi-physics applications and in the area of multi-objective optimisation.

Publisher

Walter de Gruyter GmbH

Subject

Artificial Intelligence,Computer Networks and Communications,General Engineering,Information Systems,Atomic and Molecular Physics, and Optics

Reference107 articles.

1. COMPUMAG 2007 Proceedings, IEEE Transactions on Magnetics 44 (6), (2008).

2. International Compumag Society http://www.compumag.co.uk/

3. CEFC 2006 Proceedings, IEEE Transactions on Magnetics, 43 (4), (2007).

4. Special Issue on Computational Electromagnetics, IEE Proceedings, SMT 149 (5) (2002), and 151 (6) (2004).

5. IET Sci. Meas. Technol. 1 (1), (2007).

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