A Smart Adaptively Reconfigurable DC Battery for Higher Efficiency of Electric Vehicle Drive Trains
Zhongxi Li, Aobo Yang, Gerry Chen, Nima Tashakor, Zhiyong Zeng, Angel, V. Peterchev, Stefan M. Goetz

TL;DR
This paper introduces a dynamically reconfigurable DC battery topology for electric vehicle drive trains, significantly reducing losses, distortion, and improving efficiency through rapid voltage control and modular design.
Contribution
It presents a novel adaptive DC battery system that enhances EV drive train efficiency by integrating recent low-voltage power electronics and modular circuit topologies.
Findings
Halves inverter switching losses at high speeds
Reduces total drive train losses by up to 2/3
Improves voltage shaping and reduces distortion
Abstract
This paper proposes a drive train topology with a dynamically reconfigurable dc battery, which breaks hard-wired batteries into smaller subunits. It can rapidly control the output voltage and even contribute to voltage shaping of the inverter. Based upon the rapid development of low-voltage transistors and modular circuit topologies in the recent years, the proposed technology uses recent 48 V power electronics to achieve higher-voltage output and reduce losses in electric vehicle (EV) drive trains. The fast switching capability and low loss of low-voltage field effect transistors (FET) allow sharing the modulation with the main drive inverter. As such, the slower insulated-gate bipolar transistors (IGBT) of the inverter can operate at ideal duty cycle and aggressively reduced switching, while the adaptive dc battery provides an adjustable voltage and all common-mode contributions at…
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Taxonomy
TopicsAdvanced Battery Technologies Research · Advanced DC-DC Converters · Multilevel Inverters and Converters
