A novel isolated bidirectional DC-DC converter for ultra-capacitor application in hybrid and electric vehicles

Montreal, QC(2012)

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摘要
This paper presents a new isolated bidirectional DC/DC converter for auxiliary power supplies in electric vehicles where high power density, bidirectional power flow and electric isolation are required. Compared to conventional bidirectional converters, this modified half-bridge circuit further minimizes components to 2 capacitors without any other change based on the existing highest power density circuit. With a novel PWM plus phase-shift (PPS) control strategy, it minimizes device current stresses over a wide input voltage range. Moreover, a natural zero-voltage switching method for the whole switches is achieved without additional device to reduce switching loss and device inrush voltage stresses. These advantages make the new converter promising for high power density applications, especially to overcome the high device current stresses problem caused by wide range ultra-capacitor voltage variation. In this paper, firstly, a complete design consideration and principle of the new topology is presented; secondly, an analysis of static state mode is provided; finally, a 15V/50W prototype is built up after a 60V/4kW modeling simulation on computer and it successfully proved this converter's device current stresses minimization and high power density characteristics.
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关键词
capacitor,converter device current stresses minimization,bidirectional power flow,supercapacitors,ultracapacitor voltage variation,dc-dc power convertors,voltage 60 v,natural zero-voltage switching method,device inrush voltage stresses problem,electric isolation,hybrid electric vehicles,zero voltage switching,power density circuit,high power density characteristics,pwm power convertors,isolated bidirectional dc-dc converter,static state mode analysis,switching loss reduction,modified half-bridge circuit,voltage 15 v,pps control strategy,computer simulation,ultracapacitor application,power 50 w,auxiliary power supply,phase control,power 4 kw,pwm plus phase-shift control strategy,electric vehicles
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