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An Inverter Packaging Scheme for an Integrated Segmented Traction Drive System...

by Gui-jia Su, Lixin Tang, Curtis W Ayers, Randy H Wiles
Publication Type
Conference Paper
Publication Date
Page Numbers
2799 to 2804
Conference Name
ECCE 2013
Conference Location
Denver, Colorado, United States of America
Conference Sponsor
IEEE
Conference Date
-

The standard voltage source inverter (VSI), widely used in electric vehicle/hybrid electric vehicle (EV/HEV) traction drives, requires a bulky dc bus capacitor to absorb the large switching ripple currents and prevent them from shortening the battery’s life. The dc bus capacitor presents a significant barrier to meeting inverter cost, volume, and weight requirements for mass production of affordable EVs/HEVs. The large ripple currents become even more problematic for the film capacitors (the capacitor technology of choice for EVs/HEVs) in high temperature environments as their ripple current handling capability decreases rapidly with rising temperatures. It is shown in previous work that segmenting the VSI based traction drive system can significantly decrease the ripple currents and thus the size of the dc bus capacitor. This paper presents an integrated packaging scheme to reduce the system cost of a segmented traction drive.