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Study of a non-isolated bidirectional DC–DC converter
by
Yang, L.-S
, Wu, G.W
, Lin, C.-C
in
Bidirectional
/ bidirectional DC‐DC buck‐boost converter
/ Circuits
/ control strategy
/ Converters
/ DC‐DC power convertors
/ loss reduction
/ nonisolated bidirectional DC‐DC converter
/ rectifiers
/ steady‐state analysis
/ step‐down mode
/ step‐up mode
/ Strategy
/ Switches
/ switching convertors
/ Synchronous
/ synchronous rectifier technique
/ Voltage
/ Voltage gain
/ voltage stress
/ wide‐voltage‐conversion range
2013
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Study of a non-isolated bidirectional DC–DC converter
by
Yang, L.-S
, Wu, G.W
, Lin, C.-C
in
Bidirectional
/ bidirectional DC‐DC buck‐boost converter
/ Circuits
/ control strategy
/ Converters
/ DC‐DC power convertors
/ loss reduction
/ nonisolated bidirectional DC‐DC converter
/ rectifiers
/ steady‐state analysis
/ step‐down mode
/ step‐up mode
/ Strategy
/ Switches
/ switching convertors
/ Synchronous
/ synchronous rectifier technique
/ Voltage
/ Voltage gain
/ voltage stress
/ wide‐voltage‐conversion range
2013
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Do you wish to request the book?
Study of a non-isolated bidirectional DC–DC converter
by
Yang, L.-S
, Wu, G.W
, Lin, C.-C
in
Bidirectional
/ bidirectional DC‐DC buck‐boost converter
/ Circuits
/ control strategy
/ Converters
/ DC‐DC power convertors
/ loss reduction
/ nonisolated bidirectional DC‐DC converter
/ rectifiers
/ steady‐state analysis
/ step‐down mode
/ step‐up mode
/ Strategy
/ Switches
/ switching convertors
/ Synchronous
/ synchronous rectifier technique
/ Voltage
/ Voltage gain
/ voltage stress
/ wide‐voltage‐conversion range
2013
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Journal Article
Study of a non-isolated bidirectional DC–DC converter
2013
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Overview
The study presents a non-isolated bidirectional DC–DC converter, which has simple circuit structure. The control strategy is easily implemented. Also, the synchronous rectifier technique is used to reduce the losses. The voltage gain of the proposed converter is the half and the double of the conventional bidirectional DC–DC buck/boost converter in the step-down and step-up modes, respectively. Therefore the proposed converter can be operated in wide-voltage-conversion range than the conventional bidirectional converter. The voltage stresses on the switches of the proposed converter are a half of the high-voltage side. In addition, the operating principle and steady-state analyses are discussed. Finally, a prototype circuit is implemented to verify the performance of the proposed converter.
Publisher
The Institution of Engineering and Technology,The Institution of Engineering & Technology
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