A novel two phase configuration for Switched reluctance motor with high starting torque
Ebrahim Afjei, B. Mazloomnezhad, A. Seyadatan
Abstract
Ebrahim Afjei, B. Mazloomnezhad, A. Seyadatan
Abstract
The switched reluctance (SR) motor is a simple and robust machine, which has found application over a wide power and speed ranges in different shapes and geometries. This paper briefly reviews the different types of SR motors with different geometries and then presents a new configuration for a two phase SR motor with shaped and skewed rotor poles. This motor has the ability to start and run in a specified direction without any difficulties. In another words the motor will always have starting torque no matter where the rotor position is. It also presents a centrifugal switch mounted on the motor shaft for a sudden advancement of current-pulses relative to rotor position after reaching a preset motor speed in order to develop higher torque at starting. To evaluate the motor performance, two types of analysis, namely numerical technique and experimental study have been utilized. In the numerical analysis, due to highly non-linear nature of the motor, a three dimensional finite element analysis is employed, whereas in the experimental study, a proto-type motor has been built and tested.
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The switched reluctance (SR) motor is a simple and robust machine, which has found application over a wide power and speed ranges in different shapes and geometries. This paper briefly reviews the different types of SR motors with different geometries and then presents a new configuration for a two phase SR motor with shaped and skewed rotor poles. This motor has the ability to start and run in a specified direction without any difficulties. In another words the motor will always have starting torque no matter where the rotor position is. It also presents a centrifugal switch mounted on the motor shaft for a sudden advancement of current-pulses relative to rotor position after reaching a preset motor speed in order to develop higher torque at starting. To evaluate the motor performance, two types of analysis, namely numerical technique and experimental study have been utilized. In the numerical analysis, due to highly non-linear nature of the motor, a three dimensional finite element analysis is employed, whereas in the experimental study, a proto-type motor has been built and tested.
Key concepts: Switched reluctance motor, Rotor (electric), Wound rotor motor, Control theory (sociology), Torque, AC motor, Reluctance motor, Synchronous motor