Three‐stage SiC‐based bi‐directional on‐board battery charger with titanium level efficiency
Author:
Affiliation:
1. Department of ElectronicsCarleton University1125 Colonel By DriveOttawaCanada
2. Department of Electric Power EngineeringShanghai University of Electric Power2588 Changyang RoadShanghaiPeople's Republic of China
Publisher
Institution of Engineering and Technology (IET)
Subject
Electrical and Electronic Engineering
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1049/iet-pel.2019.1263
Reference10 articles.
1. Review of Battery Charger Topologies, Charging Power Levels, and Infrastructure for Plug-In Electric and Hybrid Vehicles
2. EV/PHEV Bidirectional Charger Assessment for V2G Reactive Power Operation
3. A High-Density, High-Efficiency, Isolated On-Board Vehicle Battery Charger Utilizing Silicon Carbide Power Devices
4. Dual Active Bridge-Based Battery Charger for Plug-in Hybrid Electric Vehicle With Charging Current Containing Low Frequency Ripple
5. 2015 2015 IEEE 2nd Int. Future Energy Electronics Conf. (IFEEC 2015) Taipei Taiwan J.S. Lai L. Zhang Z. Zahid A high‐efficiency 3.3‐kW bidirectional on‐board charger 1 5
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