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Robust shape optimization of electric devices based on deterministic optimization methods and finite-element analysis with affine parametrization and design elements

Tijdschriftbijdrage - Tijdschriftartikel

© 2018, The Author(s). In this paper, gradient-based optimization methods are combined with finite-element modeling for improving electric devices. Geometric design parameters are considered by piecewise affine parametrizations of the geometry or by the design element approach, both of which avoid remeshing. Furthermore, it is shown how to robustify the optimization procedure, that is, how to deal with uncertainties on the design parameters. The overall procedure is illustrated by an academic example and by the example of a permanent-magnet synchronous machine. The examples show the advantages of deterministic optimization compared to standard and popular stochastic optimization procedures such as particle swarm optimization.
Tijdschrift: Electrical Engineering
ISSN: 0948-7921
Issue: 4
Volume: 100
Pagina's: 2635 - 2647
Jaar van publicatie:2018
BOF-keylabel:ja
IOF-keylabel:ja
BOF-publication weight:0.5
CSS-citation score:1
Auteurs:International
Authors from:Higher Education
Toegankelijkheid:Open