A Paretian Approach to Optimal Design With Uncertainties: Application in Induction Heating

A major issue in optimal design of electromagnetic devices relates to optimizing against uncertainty, in terms of geometric and physical parameters. The induction heating of a graphite disk, with the purpose to obtain a prescribed temperature profile, is considered as the model problem. The novelty...

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Veröffentlicht in:IEEE transactions on magnetics 2014-02, Vol.50 (2), p.917-920
Hauptverfasser: Di Barba, Paolo, Dughiero, Fabrizio, Forzan, Michele, Sieni, Elisabetta
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creator Di Barba, Paolo
Dughiero, Fabrizio
Forzan, Michele
Sieni, Elisabetta
description A major issue in optimal design of electromagnetic devices relates to optimizing against uncertainty, in terms of geometric and physical parameters. The induction heating of a graphite disk, with the purpose to obtain a prescribed temperature profile, is considered as the model problem. The novelty of this paper is a cost-effective method enabling the designer to select the Pareto optimal solutions trading off design criterion and sensitivity.
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subjects Cross-disciplinary physics: materials science
rheology
Design uncertainties
Exact sciences and technology
finite elements
Graphite
Indexes
Magnetism
Materials science
multiobjective optimal design
multiphysics field problems
Optimization
Other topics in materials science
Physics
Sensitivity
Temperature sensors
Uncertainty
Vectors
title A Paretian Approach to Optimal Design With Uncertainties: Application in Induction Heating
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