Title :
Bi-directional power management and fault tolerant feature in a 5-kW multilevel dc-dc converter with modular architecture
Author :
Khan, Furqan H. ; Tolbert, Leon M.
Author_Institution :
Electr. Power Res. Inst. (EPRI), Knoxville, TN, USA
Abstract :
A 5-kW multilevel modular capacitor-clamped DC-DC converter (MMCCC) with bi-directional power management and real-time fault bypassing capability will be presented in this study. The modular structure of the MMCCC topology was utilised to build this 5-kW converter with necessary redundancy and hot swap feature for industrial and automotive applications including a future plug-in hybrid or fuel-cell powered all electric vehicles. Moreover, the circuit has flexible conversion ratio that leads to establish bi-directional power management for automotive applications mitigating the boost voltage for the fuel-cell or dual battery architecture. In addition, the MMCCC exhibits better component utilisation compared to many capacitor-clamped or classical DC-DC converters based on inductive energy transfer mechanism. Thus, the MMCCC circuit can be made more compact and reliable compared to many other DC-DC converters for high-power applications.
Keywords :
DC-DC power convertors; fault tolerance; power capacitors; bidirectional power management; dual battery architecture; fault tolerant; fuel cell electric vehicles; inductive energy transfer mechanism; modular architecture; multilevel modular capacitor-clamped DC-DC converter; plug-in hybrid electric vehicles; power 5 kW; real-time fault bypassing capability;
Journal_Title :
Power Electronics, IET
DOI :
10.1049/iet-pel.2008.0165