Optimum Designed Multilayer Switched Reluctance Motors for use in Electric Vehicles to Increase Efficiency

The purpose of this paper was to investigate the optimal design of multilayer switched reluctance motors for use in electric vehicles. The method presented in this paper is to raise the efficiency of switched reluctance motor. Toyota Prius motor design was based on the true size of geometry motor with a conventional motor with the same power rating Switched Reluctance Motor 6 to 4 compared with the same surface area and Size, Using optimal design constraints Switched Reluctance Motor 4 to 4 five-layer, Switched Reluctance Motor 4 to 4 seven-layer is studied. By examining the different modes including changing arc stator and rotor, change teeth stator and rotor and the change in the air gap, we select the best structure. The motor design and relations governing method was developed using simulation software Magnet diagrams torque around the axis Z, speed, flux density was obtained. Switched Reluctance Motor Multilayer also increase more space occupied, but due to the empty space between the layers is cooling easier. Efficiency of Switched Reluctance Motor Multilayer to more Switched Reluctance Motor conventional compared. Use Switched Reluctance Motor 4 to 4 Multilayer in an electric vehicle, due to the low cost of this motor is more advantageous than the Toyota Prius motor.

[1]  Herbert Ho-Ching Iu,et al.  Economic Integration Based Solution for EMI Noise in Switched Reluctance Motor Drive , 2012, IEEE Transactions on Magnetics.

[2]  E. Afjei,et al.  Static, Dynamic, and Mixed Eccentricity Faults Diagnosis in Switched Reluctance Motors Using Transient Finite Element Method and Experiments , 2012, IEEE Transactions on Magnetics.

[3]  R. Krishnan,et al.  Switched reluctance motor drives : modeling, simulation, analysis, design, and applications , 2001 .

[4]  Ebrahim Afjei,et al.  New Double-Layer-per-Phase Isolated Switched Reluctance Motor: Concept, Numerical Analysis, and Experimental Confirmation , 2012, IEEE Transactions on Industrial Electronics.

[5]  E. Afjei,et al.  Sensorless Method for Eccentricity Fault Monitoring and Diagnosis in Switched Reluctance Machines Based on Stator Voltage Signature , 2013, IEEE Transactions on Magnetics.

[6]  Ebrahim Afjei,et al.  Magnetic Modeling, Prototyping, and Comparative Study of a Quintuple-Set Switched Reluctance Motor , 2015, IEEE Transactions on Magnetics.

[7]  Payam Farhadi,et al.  Power point tracking in photovoltaic systems by sliding mode control , 2017, 2017 10th International Symposium on Advanced Topics in Electrical Engineering (ATEE).

[8]  S. Paramasivam,et al.  Switched Reluctance Motor Modeling, Design, Simulation, and Analysis: A Comprehensive Review , 2008, IEEE Transactions on Magnetics.

[9]  Wenping Cao,et al.  Overview of Electric Motor Technologies Used for More Electric Aircraft (MEA) , 2012, IEEE Transactions on Industrial Electronics.