Title :
SiC MOSFET based single phase active boost rectifier with power factor correction for wireless power transfer applications
Author :
Lixin Tang ; Chinthavali, Madhu ; Onar, Omer C. ; Campbell, Stuart ; Miller, John M.
Author_Institution :
Power Electron. & Electr. Machinery Group, Oak Ridge Nat. Lab., Oak Ridge, TN, USA
Abstract :
Wireless Power Transfer (WPT) technology is a novel research area in the charging technology that bridges the utility and the automotive industries. There are various solutions that are currently being evaluated by several research teams to find the most efficient way to manage the power flow from the grid to the vehicle energy storage system. There are different control parameters that can be utilized to compensate for the change in the impedance due to variable parameters such as battery state-of-charge, coupling factor, and coil misalignment. This paper presents the implementation of an active front-end rectifier on the grid side for power factor control and voltage boost capability for load power regulation. The proposed SiC MOSFET based single phase active front end rectifier with PFC resulted in >97% efficiency at 137mm air-gap and >95% efficiency at 160mm air-gap.
Keywords :
MOSFET; load flow control; power factor correction; power transmission; rectifiers; silicon compounds; MOSFET based single phase active boost rectifier; PFC; SiC; WPT technology; air-gap; automotive industries; battery state-of-charge; charging technology; coil misalignment; coupling factor; grid side; load power regulation; power factor control; power factor correction; power flow; utility industries; variable parameters; vehicle energy storage system; voltage boost capability; wireless power transfer applications; Batteries; Logic gates; MOSFET; Rectifiers; Silicon carbide; Vehicles; Voltage control;
Conference_Titel :
Applied Power Electronics Conference and Exposition (APEC), 2014 Twenty-Ninth Annual IEEE
Conference_Location :
Fort Worth, TX
DOI :
10.1109/APEC.2014.6803530