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Analytical Methodology for Eddy Current Loss Simulation in Armature Windings of Synchronous Electrical Machines With Permanent Magnets

Golovanov, Dmitry; Galassini, Alessandro; Transi, Tommaso; Gerada, Chris

Authors

Dmitry Golovanov

Alessandro Galassini

Tommaso Transi



Abstract

This article describes a novel analytical methodology for eddy current losses simulation in the windings of permanent magnet synchronous machines. The methodology is based on subdomain modeling technique in conjunction with solving of ordinary differential equations system. The main advantage of the proposed method is high accuracy and significant reduction of simulation time in comparison with finite-element modeling (FEM) technique that is frequently used for eddy current loss modeling. The proposed model allows fast and accurate evaluation of proximity and skin effect in conductors in time domain for an arbitrary current waveform and machine duty cycle. The main difference from previously presented analytical methods is the possibility to evaluate losses for a wider range of conductors geometries, regardless their shape, dimensions, location in the stator slots, and rotor speed. The main contribution and novelty of the proposed analytical approach is simultaneous implementation of subdomain modeling technique and strands segmentation concept followed by the eddy current effect representation through the equivalent circuit. This approach allows reducing the computational time while keeping the accuracy close to the FEM result. The proposed model was compared to FEM, using different types and sizes of conductors and also validated experimentally.

Citation

Golovanov, D., Galassini, A., Transi, T., & Gerada, C. (2022). Analytical Methodology for Eddy Current Loss Simulation in Armature Windings of Synchronous Electrical Machines With Permanent Magnets. IEEE Transactions on Industrial Electronics, 69(10), 9761-9770. https://doi.org/10.1109/tie.2022.3161818

Journal Article Type Article
Acceptance Date Mar 12, 2022
Online Publication Date Mar 29, 2022
Publication Date 2022-10
Deposit Date Dec 13, 2024
Journal IEEE Transactions on Industrial Electronics
Print ISSN 0278-0046
Electronic ISSN 1557-9948
Publisher Institute of Electrical and Electronics Engineers
Peer Reviewed Peer Reviewed
Volume 69
Issue 10
Pages 9761-9770
DOI https://doi.org/10.1109/tie.2022.3161818
Keywords AC loss in electrical machines, analytical model, eddy current loss.
Public URL https://nottingham-repository.worktribe.com/output/7956918
Publisher URL https://ieeexplore.ieee.org/document/9744480