DocumentCode
1938167
Title
Design and control of grid-connected converter in bi-directional battery charger for Plug-in hybrid electric vehicle application
Author
Zhou, Xiaohu ; Lukic, Srdjan ; Bhattacharya, Subhashish ; Huang, Alex
Author_Institution
Future Renewable Electr. Energy Delivery & Manage. (FREEDM) Syst. Center, North Carolina State Univ., Raleigh, NC, USA
fYear
2009
fDate
7-10 Sept. 2009
Firstpage
1716
Lastpage
1721
Abstract
A new bi-directional power converter for plug-in hybrid electric vehicles (PHEV) is proposed based on a typical household circuitry configuration. This converter can achieve three major functions: battery charger mode, vehicle to grid mode (V2G) and vehicle to home mode (V2H), which are the main topics of integration of PHEVs with the grid. The detailed converter design is presented. An improved AC/DC controller is proposed in order to achieve low input current harmonics for the charger mode. The Proportional resonant+harmonics selective compensation method is utilized for the V2G mode, and capacitor current feedback and proportional resonant control methods are adopted for the V2H mode. Compared with conventional PI controllers, the proposed controllers greatly enhance the grid-connected converter´s performance in the aspects of low harmonics output and robustness against background noise.
Keywords
AC-DC power convertors; PI control; control system synthesis; hybrid electric vehicles; AC-DC controller; PI controllers; bidirectional battery charger; grid-connected converter control; plug-in hybrid electric vehicle application; selective compensation method; vehicle to grid mode; vehicle to home mode; Battery powered vehicles; Bidirectional control; Capacitors; Circuits; Feedback; Hybrid electric vehicles; Noise robustness; Proportional control; Resonance; Robust control; bi-directional battery charger; grid-connected converter; plug-in hybrid electric vehicle; vehicle to grid;
fLanguage
English
Publisher
ieee
Conference_Titel
Vehicle Power and Propulsion Conference, 2009. VPPC '09. IEEE
Conference_Location
Dearborn, MI
Print_ISBN
978-1-4244-2600-3
Electronic_ISBN
978-1-4244-2601-0
Type
conf
DOI
10.1109/VPPC.2009.5289691
Filename
5289691
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