Tapia J A, Leonardi F, Lipo T A. Consequent pole permanent magnet machine with extended field weakening capability[J]. IEEE Transactions on Industry Applications, 2003, 39(6): 1704-1709.
Kotaro M, Tadashi F, Nobuyuki N. Performance prediction of a hybrid-excitation synchronous machine with axially arranged excitation poles and permanent-magnet poles[J]. Electrical Engineering in Japan, 2003, 150(2): 43-49.
Zhang Z R, Yan Y G, Yang S S, et al. Principle of operation and feature investigation of a new topology of hybrid excitation synchronous machine[J]. IEEE Transactions on Magnetics, 2008, 44(9): 2174-2180.
[6]
Hoang E, Ben Ahmed A H, Lucidame J. Switching flux permanent magnet polyphased machines[C]. Proc. European Conf. Power Electronic and Applications, Trondheim, Norway, 1997, 3: 903-908.
[7]
Owen R L, Zhu Z Q, Howe D, et al. Alternate poles wound flux-switching permanent-magnet brushless AC machines[J]. IEEE Transactions on Industry Applications, 2010, 46(2): 790-797.
[8]
Zhu Z Q, Pang Y C. Analysis and reduction of magnet eddy current loss in flux-switching permanent magnet machines[C]. 4th IET Conference on Power Electronics, Machines and Drives, 2008: 120-124.
[9]
Thomas A S, Zhu Z Q, Jewell G W. Loss study in high speed flux-switching permanent magnet machine[J]. IEEE Transactions on Magnetic, 2009, 45(10): 4748-4751.
[10]
Chen J T, Zhu Z Q. Influence of the rotor pole number on optimal parameters in flux-switching PM brushless AC machines by the lumped-parameter magnetic circuit model[J]. IEEE Transactions on Industry Applications, 2010, 46(4): 1381-1388.
[11]
Zhu Z Q, Chen J T. Advanced flux-switching permanent magnet brushless machines[J].IEEE Transactions on Magnetic, 2010, 46(6): 1447-1453.
[12]
Hua W, Zhang G, Cheng M, et al. Electromagnetic performance analysis of hybrid-excited flux-switching machines by a nonlinear magnetic network model[J]. IEEE Transactions on Magnetic, 2011, 47(10): 3216-3219.
[13]
Zhao W X, Cheng M, Hua W, et al. Back-EMF harmonic analysis and fault-tolerant control of flux-switching permanent-magnet machine with redundancy[J]. IEEE Transactions on Industrial Electronics, 2011, 58(5): 1926-1935.
[14]
Pollock C, Pollock H, Barron R, et al. Flux switching motors for automotive applications[C]. 38th IAS Annual Meeting Conference Record , 2003: 242-249.
[15]
Chen Y, Zhu Z Q. Three-dimensional lumped-parameter magnetic circuit analysis of single-phase flux-switching permanent-magnet motor[J]. IEEE Transactions on Industry Applications, 2008, 44(6): 1701-1710.
[16]
Thomas A, Zhu Z Q, Jewell G W, et al. Flux-switching PM brushless machines with alternative stator and rotor pole combinations[C]. International Conference on Electrical Machines and Systems, 2008: 2986-2991.
[17]
Pang Y, Zhu Z Q, Howe D. Investigation of iron loss in flux-switching PM machines[C]. 4th IET Conference on Power Electronics, Machines and Drives, 2008: 460-464.
[18]
Wang C, Shen J X, Wang Y, et al. A new method for reduction of detent force in permanent magnet flux-switching linear motors[J]. IEEE Transactions on Magnetic, 2009, 45(6): 2843-2846.
[19]
Ochjie K N, Pollock C. Design/performance of a flux switching generator system for variable speed applications[C]. Fourtieth IAS Annual Meeting, 2005: 1567-1574.
[20]
Hoang E, Lecrivain M, GABSI. M. A new structure of a switching flux synchronous polyphased machine with hybrid excitation[C]. European Conference on Power Electronics and Applications, 2007: 1-8.