TY - JOUR
T1 - Electromagnetic and thermal analysis/design of an induction motor for electric vehicles
AU - Ulu, Cenk
AU - Korman, Oguz
AU - Kömürgöz, Güven
N1 - Publisher Copyright:
© 2018 Int. J. Mech. Eng. Rob. Res.
PY - 2018/11/1
Y1 - 2018/11/1
N2 - Induction machines are the most commonly used electrical machines in applications, since they are durable, easy to manufacture and control. Additionally, they require less maintenance and response different loads. In this study, the design of 115kW (continuous 85kW) squirrel cage induction motor is presented for electric vehicle applications. Main design constraints and performance criteria of the motor are determined, and the computer-aided design is performed depending on these values. In the design procedure, initially, an analytical design of the electric vehicle motor is performed depending on specified design criteria. Then, the analytical design is verified by using finite element analyses. Depending on the obtained results in electro-magnetic analyses, the squirrel cage induction motor for electric vehicle is modified in order to improve the obtained performance further. The electromagnetic and thermal analyses of the designed motor are performed by using Maxwell? and ANSYS software programs, respectively. The insulation class of the designed motor is determined by considering the maximum allowable temperature criterion. The analyses results show that the designed motor satisfies design constraints and performance criteria.
AB - Induction machines are the most commonly used electrical machines in applications, since they are durable, easy to manufacture and control. Additionally, they require less maintenance and response different loads. In this study, the design of 115kW (continuous 85kW) squirrel cage induction motor is presented for electric vehicle applications. Main design constraints and performance criteria of the motor are determined, and the computer-aided design is performed depending on these values. In the design procedure, initially, an analytical design of the electric vehicle motor is performed depending on specified design criteria. Then, the analytical design is verified by using finite element analyses. Depending on the obtained results in electro-magnetic analyses, the squirrel cage induction motor for electric vehicle is modified in order to improve the obtained performance further. The electromagnetic and thermal analyses of the designed motor are performed by using Maxwell? and ANSYS software programs, respectively. The insulation class of the designed motor is determined by considering the maximum allowable temperature criterion. The analyses results show that the designed motor satisfies design constraints and performance criteria.
KW - Electric vehicle
KW - Electromagnetic analysis
KW - Induction motor
KW - Thermal analysis
UR - http://www.scopus.com/inward/record.url?scp=85056584889&partnerID=8YFLogxK
U2 - 10.18178/ijmerr.7.6.617-623
DO - 10.18178/ijmerr.7.6.617-623
M3 - Article
AN - SCOPUS:85056584889
SN - 2278-0149
VL - 7
SP - 617
EP - 623
JO - International Journal of Mechanical Engineering and Robotics Research
JF - International Journal of Mechanical Engineering and Robotics Research
IS - 6
ER -