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1. The Demagnetization Harmonics Generation Mechanism in Permanent Magnet Machines With Concentrated Windings.

2. Investigation of Stator/Rotor Pole Number Combinations and PM Numbers in Consequent-Pole Hybrid Excited Flux Reversal Machine.

3. Investigation on Symmetrical Characteristics of Consequent-Pole Flux Reversal Permanent Magnet Machines With Concentrated Windings.

4. Influence of Armature Reaction on Magnetic-Field-Shifting Effect in Asymmetric Interior Permanent Magnet Machines.

5. A Mesh Design Technique for Double Stator Linear PM Vernier Machine Based on Equivalent Magnetic Network Modeling.

6. Winding Configurations and Pole/Tooth Combinations of Doubly-Fed Flux-Switching Permanent Magnet Machines.

7. Difference in Base Frequency and Torque Between Distributed and Concentrated Windings in Permanent Magnet Motors.

8. Comparative Study of Dual-Rotor Slotless Axial-Flux Permanent Magnet Machines With Equidirectional Toroidal and Conventional Concentrated Windings.

9. Improved Analytical Analysis of Novel Integrated Variable Reluctance Resolver for Compact Machine Topology.

10. Analysis of a Triple-Stator Axial-Flux Spoke-Type Permanent Magnet Vernier Machine.

11. Multiobjective Optimization Design of Unequal Halbach Array Permanent Magnet Vernier Motor Based on Optimization Algorithm.

12. Analytical Model and Experimental Verification of Permanent Magnet Eddy Current Loss in Permanent Magnet Machines With Nonconcentric Magnetic Poles.

13. Accurate Calculation of Magnetic Field of Same-Pole and Same-Slot Surface-Mounted Three-Phase Permanent Magnet Synchronous Motor.

14. Comprehensive Investigation of an Improved Two-Phase Modular PM-Assisted Switched Reluctance Motor for Enhanced Torque Performance.

15. A Novel Dual-Stator Vernier Permanent Magnet Machine With Improved Power Factor.

16. Comparative Analysis of Double Flux Modulation Permanent Magnet Machines With Different Stator PM Arrangements.

17. A Novel Consequent-Pole Modular-Mover Linear Permanent Magnet Vernier Machine for Thrust Ripple and Cost Reduction.