Winding Function-Based Analytical Modeling of Core Loss in an Induction Machine Considering Slotting Effects and the Frequency-Dependent B-H Curve Characteristics
Author:
Affiliation:
1. Centre for Hybrid Automotive Research and Green Energy (CHARGE) Laboratory, University of Windsor, Windsor, ON, Canada
2. Nemak, Windsor, ON, Canada
Publisher
Institute of Electrical and Electronics Engineers (IEEE)
Subject
Electrical and Electronic Engineering,Electronic, Optical and Magnetic Materials
Link
http://xplorestaging.ieee.org/ielx7/20/9841496/09701925.pdf?arnumber=9701925
Reference18 articles.
1. An Analytical Iron Loss Calculation Model of Inverter-Fed Induction Motors Considering Supply and Slot Harmonics
2. An Analytical-Numerical Approach to Model and Analyse Squirrel Cage Induction Motors
3. Stator Inter-turn Fault Modelling and Analysis on Induction Motor based on MCCM
4. Thermal and Mechanical Analysis of a 72/48 Switched Reluctance Motor for Low-Speed Direct-Drive Mining Applications
5. New Approach for Accurate Prediction of Eddy Current Losses in Laminated Material in the Presence of Skin Effect With 2-D FEA
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1. A Novel Winding Design for EV Traction Electric Motors: Hybrid Hairpin Winding Layout Containing Both Copper and Aluminum Windings;2024 IEEE International Magnetic Conference - Short papers (INTERMAG Short papers);2024-05-05
2. Improved Winding Function Based Model for Analytical Estimation of Stray Load Loss in Traction Induction Machines;IEEE Journal of Emerging and Selected Topics in Industrial Electronics;2024-04
3. Magnetic Field-Based Induction Machine Modeling Incorporating Space and Time Harmonic Effects;IEEE Access;2024
4. Non-Conventional Concentric Winding Layout Design of Hairpin Windings for Enhanced Traction Performance of Induction Machines;IECON 2023- 49th Annual Conference of the IEEE Industrial Electronics Society;2023-10-16
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