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An Isolated Three-Port Bidirectional DC-DC Converter With Decoupled Power Flow Management

IEEE Transactions on Power Electronics · 2008 · Vol. 23(5) · pp. 2443–2453
Chuanhong ZhaoS.D. RoundJohann W. Kolar

Abstract

An isolated three-port bidirectional dc-dc converter composed of three full-bridge cells and a high-frequency transformer is proposed in this paper. Besides the phase shift control managing the power flow between the ports, utilization of the duty cycle control for optimizing the system behavior is discussed and the control laws ensuring the minimum overall system losses are studied. Furthermore, the dynamic analysis and associated control design are presented. A control-oriented converter model is developed and the Bode plots of the control-output transfer functions are given. A control strategy with the decoupled power flow management is implemented to obtain fast dynamic response. Finally, a 1.5 kW prototype has been built to verify all theoretical considerations. The proposed topology and control is particularly relevant to multiple voltage electrical systems in hybrid electric vehicles and renewable energy generation systems.

Advanced DC-DC ConvertersMultilevel Inverters and ConvertersAdvanced Battery Technologies ResearchDuty cycleTransformerControl theory (sociology)EngineeringPower flowElectric power systemVoltageComputer scienceControl engineeringElectrical engineering
Citations
873
FWCI
18.95
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30
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References
A New ZVS Bidirectional DC–DC Converter for Fuel Cell and Battery Application
IEEE Transactions on Power Electronics · 2004 · 777 citations
A three-phase soft-switched high-power-density DC/DC converter for high-power applications
IEEE Transactions on Industry Applications · 1991 · 2,451 citations
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