DocumentCode
1647906
Title
Control challenges of an externally excited synchronous machine in an automotive traction drive application
Author
Märgner, Moritz ; Hackmann, Wilhelm
Author_Institution
BU Hybrid Electr. Vehicles, Continental AG, Berlin, Germany
fYear
2010
Firstpage
1
Lastpage
6
Abstract
Externally excited synchronous machines exceptionally suit the needs of axle drives in automotive applications due to their high efficiency over the whole operation range and the advantages for the realization of the functional safety. With the rotor current giving an additional degree of freedom new possibilities and necessities come up, bearing special challenges regarding the control. A loss minimum operation of the machine is needed, to achieve the requested vehicle autonomy at limited battery capacity, and is realized by a loss optimized reference current processing. With both costs and system weight needing maximum thermal utilization of the components, special attention is paid to a compatible derating concept. Since a quick torque response is important for the vehicle stability control and the driving performance, it is shown, that even with the comparatively high rotor time constant a highly dynamic torque control is realizable by a suitable system design and control structure. Fulfilling safety requirements forced by high ASIL classifications of vehicle drives is shown at the determination of the rotor temperature. Finally the handling in case of a system malfunction to realize a proper shutoff behavior is described.
Keywords
automotive components; machine control; stability; synchronous motor drives; traction; ASIL classifications; automotive traction drive application; axle drive; control challenges; externally excited synchronous machine; loss minimum operation; rotor current; vehicle drives; vehicle stability control; Circuit faults; Current measurement; Rotors; Safety; Stators; Synchronous machines; Torque; Externally excited synchronous machine; functional safety; rotor current control; vehicle traction drive;
fLanguage
English
Publisher
ieee
Conference_Titel
Emobility - Electrical Power Train, 2010
Conference_Location
Leipzig
Print_ISBN
978-1-4244-8410-2
Type
conf
DOI
10.1109/EMOBILITY.2010.5668056
Filename
5668056
Link To Document