The main goal of the researches is the application of different optimisation methods and numerical techniques to multi-objective optimisation of design of industrial induction heating installations. The multi-objective optimisation problem is mathematically formulated in terms of the most important optimisation criteria, e.g., temperature uniformity and energy efficiency. Non-dominated sorting genetic algorithm and alternance method of optimal control theory are applied as effective tools for the practice-oriented problems solutions based on nonlinear coupled electromagnetic and temperature field analysis. Optimisation procedures are tested and investigated for induction heating of a graphite disc and an aluminium cylindrical billet. The developed optimisation procedures are planned to be applied to wide range of real-life industrial problems of optimal design and control of electromagnetic devices and systems.

Multi-objective optimisation of induction heaters design based on numerical coupled field analysis

Elisabetta Sieni;Michele Forzan
2014-01-01

Abstract

The main goal of the researches is the application of different optimisation methods and numerical techniques to multi-objective optimisation of design of industrial induction heating installations. The multi-objective optimisation problem is mathematically formulated in terms of the most important optimisation criteria, e.g., temperature uniformity and energy efficiency. Non-dominated sorting genetic algorithm and alternance method of optimal control theory are applied as effective tools for the practice-oriented problems solutions based on nonlinear coupled electromagnetic and temperature field analysis. Optimisation procedures are tested and investigated for induction heating of a graphite disc and an aluminium cylindrical billet. The developed optimisation procedures are planned to be applied to wide range of real-life industrial problems of optimal design and control of electromagnetic devices and systems.
2014
Alternance method; Design; Electromagnetic device; Induction heating; Multi-objective optimisation; Non-sorted genetic algorithm NSGA-II; Optimal control theory; Pareto optimality theory
Pleshivtseva, Yuliya; Di Barba, Paolo; Rapoport, Edgar; Nacke, Bernard; Nikanorov, Alexander; Lupi, Sergio; Sieni, Elisabetta; Forzan, Michele
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11383/2077230
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