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Afterwards, the initialization of motor’s length and poles number is following. The first parameter is specified by the size of the tire and the latter should be chosen carefully as it is of great importance for the overall motor performance [33]. The proper poles and slots com- bination can eliminate the presence of higher order harmonics in the air gap flux distribution, which results in lower iron losses and torque ripple. The motor must be capable of provid- ing high torque when the vehicle accelerates while its losses should be as low as possible. Moreover, concentrated winding configuration is preferable for this traction system, since it presents shorter end windings and higher slot fill factor compared to the corresponding ones of distributed windings, and contributes to a smaller motor volume and lower copper losses, respectively. High power and torque density are very essential characteristics for such an application since there is restricted space inside the wheel. Furthermore, a high efficiency should be achieved over a wide speed range. Thus, the minimization of motor’s volume simul- taneously with the enhancement of efficiency will be of great concern during the construction of the objective functions. A weighted linear scalarization function is proposed—as a cost Figure 2. Proposed overall PMSM design and HEV performance assessment procedure. Design, Optimization and Modelling of High Power Density Direct-Drive Wheel Motor for Light Hybrid Electric Vehicles http://dx.doi.org/10.5772/intechopen.68455 131
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Hybrid Electric Vehicles
Titel
Hybrid Electric Vehicles
Autor
Teresa Donateo
Herausgeber
InTech
Ort
Rijeka
Datum
2017
Sprache
englisch
Lizenz
CC BY 4.0
ISBN
978-953-51-3298-1
Abmessungen
15.5 x 22.5 cm
Seiten
162
Schlagwörter
Physical Sciences, Engineering and Technology, Engineering, Vehicle Engineering, Automobile Engineering
Kategorie
Technik
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Hybrid Electric Vehicles