Title :
Split Converter-Fed SRM Drive for Flexible Charging in EV/HEV Applications
Author :
Hu, Yihua ; Gan, Chun ; Cao, Wenping ; Li, Chushan ; Finney, Stephen
Abstract :
Electric vehicles (EVs) and hybrid EVs are the way forward for green transportation and for establishing low-carbon economy. This paper presents a split converter-fed four-phase switched reluctance motor (SRM) drive to realize flexible integrated charging functions (dc and ac sources). The machine is featured with a central-tapped winding node, eight stator slots, and six rotor poles (8/6). In the driving mode, the developed topology has the same characteristics as the traditional asymmetric bridge topology but better fault tolerance. The proposed system supports battery energy balance and on-board dc and ac charging. When connecting with an ac power grid, the proposed topology has a merit of the multilevel converter; the charging current control can be achieved by the improved hysteresis control. The energy flow between the two batteries is balanced by the hysteresis control based on their state-of-charge conditions. Simulation results in MATLAB/Simulink and experiments on a 150-W prototype SRM validate the effectiveness of the proposed technologies, which may provide a solution to EV charging issues associated with significant infrastructure requirements.
Keywords :
Batteries; Hysteresis; Reluctance motors; System-on-chip; Topology; Voltage control; Windings; Battery chargers; DC-DC power conversion; dc???dc power conversion; electric vehicles; electric vehicles (EVs); hybrid EVs (HEVs); hybrid electric vehicles; integrated chargers; propulsion; switched reluctance motors; switched reluctance motors (SRMs);
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2015.2426142