Electric Vehicle Traction Drive Using Si/SiC Hybrid Switches

Master Thesis (2020)
Author(s)

C. Tan (TU Delft - Electrical Engineering, Mathematics and Computer Science)

Contributor(s)

T. B. Soeiro – Mentor (TU Delft - DC systems, Energy conversion & Storage)

Pavol Bauera – Graduation committee member (TU Delft - DC systems, Energy conversion & Storage)

A. Lekic-Vervoort – Graduation committee member (TU Delft - Intelligent Electrical Power Grids)

Faculty
Electrical Engineering, Mathematics and Computer Science
Copyright
© 2020 C. Tan
More Info
expand_more
Publication Year
2020
Language
English
Copyright
© 2020 C. Tan
Graduation Date
26-08-2020
Awarding Institution
Delft University of Technology
Faculty
Electrical Engineering, Mathematics and Computer Science
Reuse Rights

Other than for strictly personal use, it is not permitted to download, forward or distribute the text or part of it, without the consent of the author(s) and/or copyright holder(s), unless the work is under an open content license such as Creative Commons.

Abstract

The parallel connection of a Silicon (Si)-based IGBT and a Silicon Carbide (SiC)-based MOSFET forming a so called hybrid switch can be used to capitalize on the advantageous features of both semiconductor and materials technologies. In this thesis, a hybrid switch-based inverter designed for the application of Electric Vehicle (EV) traction drive is compared to the conventional inverter assembled with Si-based IGBTs, and SiC-based MOSFETs. According to different standardized driving cycles, Electric Vehicles operate in low partial load for a considerable amount of the time. Therefore, in this application, semiconductor conduction losses can be considerably reduced when unipolar switches such as MOSFETs are used. Collectively, this work shows that the hybrid switch configuration constitutes a good compromise between efficiency and cost when compared to a solution implementing only Si-based IGBT or solely SiC-based MOSFETs.

Files

License info not available