On the Use of Topology Optimization for Synchronous Reluctance Machines Design

Author:

Korman OğuzORCID,Di Nardo MauroORCID,Degano MicheleORCID,Gerada ChrisORCID

Abstract

Synchronous reluctance (SynRel) machines are considered one of the promising and cost-effective solutions to many industrial and mobility applications. Nonetheless, achieving an optimal design is challenging due to the complex correlation between geometry and magnetic characteristics. In order to expand the limits formed by template-based geometries, this work approaches the problem by using topology optimization (TO) through the density method (DM). Optimization settings and their effects on results, both in terms of performance and computation time, are studied extensively by performing optimizations on the rotor of a benchmark SynRel machine. In addition, DM-based TO is applied to an existing rotor geometry to assess its use and performance as a design refinement tool. The findings are presented, highlighting several insights into how to apply TO to SynRel machine design and its limitations, boundaries for performance improvements and related computational cost.

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous)

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1. Methods for optimizing rotors of synchronous electric motors with permanent magnets;Power engineering: research, equipment, technology;2024-09-10

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3. Design and additive manufacturing of a lightweight aerospace electric actuator;Open Research Europe;2024-06-21

4. Electromagnetic and Mechanical Topology Optimization for SynRM Rotors Considering High Dimensional Constraints;IEEE Transactions on Industrial Electronics;2023-12

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