This content is not included in your SAE MOBILUS subscription, or you are not logged in.

Finite Element Simulation-Based Design Optimization of Permanent Magnet Motors considering Drive Cycle

Journal Article
14-10-02-0012
ISSN: 2691-3747, e-ISSN: 2691-3755
Published March 29, 2021 by SAE International in United States
Finite Element Simulation-Based Design Optimization of Permanent
                    Magnet Motors considering Drive Cycle
Sector:
Citation: Kant, K., Kirtley, J., Iyer, L., and Schlager, G., "Finite Element Simulation-Based Design Optimization of Permanent Magnet Motors considering Drive Cycle," SAE Int. J. Elec. Veh. 10(2):157-165, 2021, https://doi.org/10.4271/14-10-02-0012.
Language: English

References

  1. El-Refaie , A.M. Motors/Generators for Traction/Propulsion Applications: A Review IEEE Vehicular Technology Magazine 8 1 90 99 2013
  2. Ehsani , M. , Gao , Y. , Emadi , A. , and Electric , M. Hybrid Electric, and Fuel Cell Vehicles: Fundamentals, Theory, and Design Second Boca Raton, FL CRC Press 2017
  3. Husain , I. Electric and Hybrid Vehicles: Design Fundamentals Second Boca Raton, FL CRC Press 2010
  4. Chau , K.T. Electric Vehicle Machines and Drives: Design, Analysis and Application Hoboken, NJ John Wiley & Sons 2015
  5. Pyrhonen , J. , Jokinen , T. , and Hrabovcova , V. Design of Rotating Electrical Machines Chichester John Wiley & Sons 2013
  6. Lipo , T.A. Introduction to AC Machine Design Hoboken, NJ John Wiley & Sons 2017
  7. Rosu , M. , Zhou , P. , Lin , D. , Ionel , D.M. et al. Multiphysics Simulation by Design for Electrical Machines, Power Electronics and Drives Hoboken, NJ John Wiley & Sons 2017
  8. Stipetic , S. , Zarko , D. , and Kovacic , M. Optimised Design of Permanent Magnet Assisted Synchronous Reluctance Motor Series Using Combined Analytical-Finite Element Analysis Based Approach IET Electric Power Applications 10 5 330 338 2016
  9. Chang , L. , Dawson , G.E. , and Eastham , T.R. Combined Finite Element and Analytical Methods for Rotor Design of Permanent Magnet Synchronous Motors Electric Machines & Power Systems 26 5 465 476 1998
  10. Bianchi , N. and Bolognani , S. Magnetic Models of Saturated Interior Permanent Magnet Motors Based on Finite Element Analysis Conference Record of 1998 IEEE Industry Applications Conference. Thirty-Third IAS Annual Meeting St. Louis, MO 1998 1 27 34
  11. Ruuskanen , V. , Nerg , J. , Pyrhonen , J. , Ruotsalainen , S. et al. Drive Cycle Analysis of a Permanent-Magnet Traction Motor Based on Magnetostatic Finite-Element Analysis IEEE Transactions on Vehicular Technology 64 3 1249 1254 2015
  12. de Paula , G.T. , Monteiro , J.R.B.d.A. , de Almeida , T.E.P. , de Santana , M.P. et al. Evaluation of Surface Mounted PM Machine’s Parameters on Load Conditions Using Frozen Permeability Method. Part. II 2014 International Conference on Electrical Machines (ICEM) Berlin 2014 156 161
  13. Zhu , Z.Q. , Pang , Y. , Howe , D. , Iwasaki , S. et al. Analysis of Electromagnetic Performance of Flux-Switching Permanentmagnet Machines by Nonlinear Adaptive Lumped Parameter Magnetic Circuit Model IEEE Transactions on Magnetics 41 11 4277 4287 2005
  14. Kirtley , J.L. http://web.mit.edu/kirtley/www/doe- kirtley-may-2011.pdf 2020
  15. Lazari , P. , Wang , J. , and Chen , L. A Computationally Efficient Design Technique for Electric-Vehicle Traction Machines IEEE Transactions on Industry Applications 50 5 3203 3213 2014
  16. Fatemi , A. , Demerdash , N.A.O. , Nehl , T.W. , and Ionel , D.M. Large-Scale Design Optimization of PM Machines over a Target Operating Cycle IEEE Transactions on Industry Applications 52 5 3772 3782 2016
  17. Ley , J. and Lutz , J. 2006
  18. Walker , A. , Galea , M. , Gerada , C. , Mebarki , A. et al. A Topology Selection Consideration of Electrical Machines for Traction Applications: Towards the Freedomcar 2020 Targets 2015 Tenth International Conference on Ecological Vehicles and Renewable Energies (EVER) Monte Carlo, Monaco Mar. 2015 1 10
  19. Fessler , R.R. 2011
  20. Patil , N. , Lawler , J.S. , and McKeever , J. 2007
  21. Kant , K. 2019 https://dspace.mit.edu/handle/1721.1/122551
  22. Helwig , N.E. 2017 http://users.stat.umn.edu/helwig/notes/cluster-Notes.pdf 2019
  23. Tutuianu , M. , Marotta , A. , Steven , H. , Ericsson , E. et al. 2013
  24. Korta , P. , Iyer , L.V. , Lai , C. , Mukherjee , K. et al. A Novel Hybrid Approach towards Drive-Cycle Based Design and Optimization of a Fractional Slot Concentrated Winding SPMSM for BEVs 2017 IEEE Energy Conversion Congress and Exposition (ECCE) Cincinnati, OH 2017 2086 2092
  25. Bianchi , N. and Bolognani , S. Design Techniques for Reducing the Cogging Torque in Surface-Mounted PM Motors IEEE Transactions on Industry Applications 38 5 1259 1265 2002
  26. Kant , K. , Iyer , L.V. , Kirtley , J.L. , and Schlager , G. Finite Element Simulation based method for Design and Optimization of Flux Switching Motor for EV/HEV Traction Application 2019 IEEE Energy Conversion Congress and Exposition (ECCE) Baltimore, MD 2019 3991 3997
  27. Eclipse Magnetics, “Sintered Neodymium Iron Boron (NdFeB) Magnets, https://www.eclipsemagnetics.com/resources/sintered-neodymium-iron-boron-ndfeb-magnets 2019

Cited By