[1] S. Nonaka and T. Higuchi, “Elements of linear induction motor design for urban transit”, IEEE Trans. Magn.,Vol. 23, No. 5, pp. 3002-3004 , September 1989.
[2] S. Yoon, J. Hur and D. Hyun, "A method of optimal design of single-sided linear induction motor for transit", IEEE Trans. Magn.,Vol. 33, No. 5, pp. 4215-4217, September 1997.
[3] W. Xu, J. Zhu, L, Tan, Y. Guo, S, Wang, and Y. Wang, “
Optimal design of a linear induction motor applied in transportation”, IEEE Int. Conf. on
Ind. Tech., pp. 1-6, 2009.
[5] S. Osawa, M. Wada, M. Karita, D. Ebihara and T. Yokoi, “Light-weight type linear induction motor and its characteristics”, IEEE Trans. Magn.,Vol. 28, No. 4, pp. 3003–3005, September 1992.
[6] M. Kitamura, N. Hino, H. Nihei and M. Ito, “A direct search shape optimization based on complex expressions of 2-dimentional magnetic fields and forces”, IEEE Trans. Magn.,Vol. 34, No. 5, pp. 2845–2848, September 1998.
[7] B. Laporte, N. Takorabet and G. Vinsard , “An approach to optimize winding design in linear induction motors”, IEEE Trans. Magn.,Vol. 33, No. 2, pp. 1844–1847, March 1997.
[8] T. Mishima, M. Hiraoka and T. Nomura, “A study of the optimum stator winding arrangement of LIM in maglev systems”, IEEE Int. Conf. on Electric Machines Drives, IEMDC, pp. 1238–1242, May 2005.
[9] A. Hassanpour Isfahani, H. Lesani and B. M. Ebrahimi, “Design optimization of linear induction motor for improved efficiency and power factor”, IEEE Int. Conf. on Electric Machines Drives, IEMDC, pp. 988–991, May 2007.
[10] A. Hassanpour Isfahani, B. M. Ebrahimi, and H. Lesani, “Design optimization of a low-speed single-sided linear induction motor for improved efficiency and power factor”, IEEE Trans. Magn., Vol. 44, No. 2, pp. 266–272, February 2008.
[11] C. Lucas, Z. Nasiri G. and F. Tootoonchian, "Application of an imperialist competitive algorithm to design of linear induction motor", Energy Conversion and Management, Vol. 51, pp. 1407-1411, 2010.
[12] D. H. Im, S. C. Park, and J. W. Im, “Design of single-sided linear induction motor using the finite element method and SUMT”, IEEE Trans. Magn.,Vol. 29, No. 2, pp. 1762-1766, March 1993.
[13] J. Duncan, "Linear Induction motor-equivalent circuit model", IEE Proc. on
Electric Power Appl., Vol. 130, No. 1, pp. 51-57, 1983.
[14] S. Nonaka, "Investigation of equivalent circuit quantities and equations for calculation of characteristics of single-sided linear induction motors (LIM)", Elec. Eng. in Japan, Vol. 117, No. 2, pp. 107-121, 1996.
[15] S. Nonaka, "Investigation of equations for calculation of secondary resistance and secondary leakage reactance of single-sided linear induction motors", Elec. Eng. in Japan, Vol. 122, No. 1, pp. 60-67, 1998.
[16] W. Xu, J. G. Zhu, Y. Zhang, Y. Li, Y. Wang, and Y. Guo, “An Improved equivalent circuit model of a single-sided linear induction motor”, IEEE Trans on Vehicular Tech., Vol. 59, No. 5, pp.:2277-2289, June 2010.
[17] W. Xu, J. G. Zhu, Y. Zhang, Z. Li, Y. Li, Y. Wang, Y. Guo, and W. Li, “Equivalent circuits for single-sided linear induction motors”, IEEE Trans on Ind. Appl., Vol. 46, No. 6, pp.:2410-2423, Nov./Dec. 2010.
[18] S. G. Lee, H. Lee, S. Ham, C. Jin, H. Park, and J. Lee, “
Influence of the construction of secondary reaction plate on the transverse edge effect in linear induction motor”, IEEE Trans. Magn.,Vol. 45, No. 6, pp. 2815-2818, June 2009.
[19] J. F. Gieras, G. E. Dawson, A. R. Easthan, “A new longitudinal end effect factor for linear induction motor”, IEEE Trans. Energy Convers., Vol. 2, No. 1, pp.: 152-159, March 1987.
[20] R. C. Creppe, J. A. C. Ulson and J. F. Rodrigues, “Influence of design parameters on linear induction motor end effect”, IEEE Trans. Energy Convers., Vol. 23, No. 2, pp.:358-362, June 2008.
[21] J. Lu and W. Ma., “Research on end effect of linear induction machine for high-speed industrial transportation”, IEEE Trans on Plasma Sci., Vol. 39, No. 1, pp.: 116-120, January 2011.
[22] T. Yang, L. Zhou, and L. Li, “Influence of design parameters on end effect in long primary double-sided linear induction motor”, IEEE Trans on Plasma Sci.,Vol. 39, No. 1, pp.:192-197, January 2011.
[23] A. S. Gercek and V. M. Karsli, “Performance prediction of the single-sided linear induction motors for transportation considers longitudinal end effect by using analytical method”, Contemporary Engineering science, Vol. 2, No. 2, pp: 95-104, 2009.
[24] A. Z. Bazghaleh, M. R. Naghashan and M. R. Meshkatoddini, “Optimum design of single-sided linear induction motors for improved motor performance”, IEEE Trans. Magn.,Vol. 46, No. 11, pp. 3939–3947, November 2010.
[25] I. Boldea, S. A. Nasar, Linear motion electromagnetic devices, Taylor & Francis, New York 2001.
[26] S. A. Nasar and I. Boldea, Linear electric motors, Prentice-Hall, Inc., Englewood Cliffs, New Jersey, 1987.
[27] M. Mirsalim, A. Doroudi and J. S. Moghani, “Obtaining the operating characteristics of linear induction motors: a new approach”, IEEE Trans. Magn.,Vol. 38, No. 2, pp. 1365–1370, March 2002.
[28] E. R. Laithwaite, Induction machines for special purposes, George Newnes Limited, London 1996.
[29] R. M. Pai,I. Boldea, and S. A. Nasar, “A complete equivalent circuit of a linear induction motor with sheet secondary”, IEEE Trans. Magn.,Vol. 24, No. 1, January 1988.