Revolution of Electric Vehicle Charging Technologies Accelerated by Wide Bandgap Devices
This article presents the state-of-the-art electric vehicle (EV) charging technologies that benefit from the wide bandgap (WBG) devices, which is regarded as the most significant revolution in the power electronics industry in the past few decades. First, the recent WBG device technology evolution,...
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Veröffentlicht in: | Proceedings of the IEEE 2021-06, Vol.109 (6), p.985-1003 |
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description | This article presents the state-of-the-art electric vehicle (EV) charging technologies that benefit from the wide bandgap (WBG) devices, which is regarded as the most significant revolution in the power electronics industry in the past few decades. First, the recent WBG device technology evolution, performance comparison, and reliability issues are introduced. Then, topology development, efficiency and power density boost, and cost reduction brought by the WBG devices for EV charging equipment, such as onboard chargers, fast-charging stations, and wireless chargers, are discussed. A figure of merit (FOM) for evaluating the performance of wireless chargers is also proposed. Finally, the EV charging technology roadmap forecast is presented based on the WBG devices' evolutionary trends. |
doi_str_mv | 10.1109/JPROC.2021.3071977 |
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Finally, the EV charging technology roadmap forecast is presented based on the WBG devices' evolutionary trends.</description><subject>Devices</subject><subject>Electric vehicle (EV)</subject><subject>Electric vehicle charging</subject><subject>Electric vehicles</subject><subject>Electronic equipment</subject><subject>Energy gap</subject><subject>fast charger</subject><subject>Figure of merit</subject><subject>Gallium nitride</subject><subject>onboard charger (OBC)</subject><subject>P-i-n diodes</subject><subject>Performance evaluation</subject><subject>Schottky diodes</subject><subject>Silicon carbide</subject><subject>Topology</subject><subject>wide bandgap (WBG) devices</subject><subject>Wireless power transfer</subject><subject>wireless power transfer (WPT)</subject><issn>0018-9219</issn><issn>1558-2256</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2021</creationdate><recordtype>article</recordtype><sourceid>RIE</sourceid><recordid>eNo9kEtPwkAYRSdGExH9A7qZxHVxnm1niRVfIcEQfOya6fSbMqR2cFpI-PcWIa7u5p57k4PQNSUjSom6e32bz7IRI4yOOEmoSpITNKBSphFjMj5FA0JoGilG1Tm6aNsVIYTLmA_Q1xy2vt50zjfYWzypwXTBGfwBS2dqwNlSh8o1FV6AWTa-9pWDFo-NgRqC7qDExQ5_uhLwvW7KSq_xA2ydgfYSnVldt3B1zCF6f5wssudoOnt6ycbTyDAlu0hoqyTlrJCJEXGsLVep0FQblWggIkkUWB2Lskg4KCuEMGCYVHEhU7BcSj5Et4fddfA_G2i7fOU3oekvcyZZqoSgKu5b7NAywbdtAJuvg_vWYZdTku8N5n8G873B_Giwh24OkAOAf0CJ3iun_BeqSGy5</recordid><startdate>20210601</startdate><enddate>20210601</enddate><creator>Li, Siqi</creator><creator>Lu, Sizhao</creator><creator>Mi, Chunting Chris</creator><general>IEEE</general><general>The Institute of Electrical and Electronics Engineers, Inc. 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subjects | Devices Electric vehicle (EV) Electric vehicle charging Electric vehicles Electronic equipment Energy gap fast charger Figure of merit Gallium nitride onboard charger (OBC) P-i-n diodes Performance evaluation Schottky diodes Silicon carbide Topology wide bandgap (WBG) devices Wireless power transfer wireless power transfer (WPT) |
title | Revolution of Electric Vehicle Charging Technologies Accelerated by Wide Bandgap Devices |
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