SUITABILITY OF LINEAR SWITCHED RELUCTANCE MOTOR FOR ADVANCED ELECTRIC TRACTION SYSTEM, 142-148.

V. Shirish Murty, Shailendra Jain, and Amit Ojha

References

  1. [1] R. Neelakantan, Speed and socioeconomic development: Influence of indian railways, ADBI Working Paper, Asian Development Bank Institute, Tokyo, Japan, No. 952, 2019, 1–16.
  2. [2] V.S. Murty and S. Jain, Conventional Indian railways and the advanced transportation systems: A comparative review, 7th India International Conf. on Power Electronics (IICPE), Patiala, Nov. 2016, 1–5.
  3. [3] R. Hellinger and P. Mnich, Linear motor powered transportation: History, present status, and future outlook, Proceedings of the IEEE, 97, 2009, 1892–1900.
  4. [4] H. Gurol, General atomics linear motor applications: Moving towards deployment, Proceedings of the IEEE, 97 (11), 2009, 1864–1871.
  5. [5] Z. Yang, F. Shang, I.P. Brown, and M. Krishnamurthy, Comparative study of interior permanent magnet, induction, and switched reluctance motor drives for EV and HEV applications, IEEE Transactions on Transportation Electrification, 1 (3), 2015, 245–254.
  6. [6] I. Boldea, L.N. Tutelea, L. Parsa, and D. Dorrell, Automotive electric propulsion systems with reduced or no permanent magnets: An overview, IEEE Transactions on Industrial Electronics, 61(10), 2014, 5696–5711.
  7. [7] R. Cao, E. Su and M. Lu, Comparative study of permanent magnet assisted linear switched reluctance motor and linear flux switching permanent magnet motor for railway transportation, IEEE Transactions on Applied Superconductivity, 30 (4), 2020, 1–5.
  8. [8] J.F. Pan, Y. Zou, and G. Cao, An asymmetric linear switched reluctance motor, IEEE Transactions on Energy Conversion, 28 (2), 2013, 444–451.
  9. [9] J. Garcia, B.B. Molina, and P. Andrada, Modelling and simulation of a linear switched reluctance force actuator, IET Electric Power Applications, 7(5), 2013, 350–359.
  10. [10] C. Gan, J. Wu, Q. Sun, W. Kong, H. Li, and Y. Hu, A review on machine topologies and control techniques for low-noise switched reluctance motors in electric vehicle applications, IEEE Access, 6, 2018, 31430-31443.
  11. [11] B.-S. Lee, H.-K. Bae, P. Vijayraghavan, and R. Krishnan, Design of a linear switched reluctance machine, IEEE Transactions on Industry Applications, 36(6), 2000, 1571–1580.
  12. [12] V.S. Murty, S. Jain, and A. Ojha, Application of linear switched reluctance motor for sustainable electric vehicular system, International Journal of Power and Energy Systems, 40(1), 2020, 1–8.
  13. [13] D. Wang, D. Zhang, X. Du, and X. Wang, Unitized design methodology of linear switched reluctance motor with segmental secondary for long rail propulsion application, IEEE Transactions on Industrial Electronics, 65(12), 2018, 9884–9894.
  14. [14] S.W. Zhao, N.C. Cheung, W. Gan and Z.G. Sun, A novel flux linkage measurement method for linear switched reluctance motors, IEEE Transactions on Instrumentation and Measurement, 58(10), 2009, 3569–3575.
  15. [15] H. Chen and Q. Wang, Electromagnetic analysis on two structures of bilateral switched reluctance linear motor, IEEE Transactions on Applied Superconductivity, 26(4), 2016, 1–9.

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