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Control technique for series input-parallel output converter topologies
Jonathan W. Kimball
, Joseph T. Mossoba
,
Philip T. Krein
Electrical and Computer Engineering
Grainger College of Engineering
Coordinated Science Lab
Research output
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Keyphrases
Additional Feedback
33%
Approach Control
33%
Circuit Parameters
33%
Control Approach
33%
Control Input
33%
Control Method
100%
Control Operation
33%
Controller
33%
Converter Topology
100%
Current Sharing Control
33%
Current-mode Approach
100%
DC-DC Converter
33%
Disturbance Rejection
33%
Dynamic Current Sharing
33%
Dynamic Performance
33%
Feedback Control
33%
Feedback Loop
33%
Four-phase
33%
High Performance
33%
High Power Conversion Efficiency
33%
Input Voltage
33%
Input Voltage Sharing
33%
Input-series Output-parallel
100%
Output Current Sharing
33%
Output Voltage
66%
Phase Converter
33%
Power Circuit
33%
Sensorless Current Mode
100%
Simple Controller
33%
Stable Voltage
33%
System Performance
33%
Voltage Feedback Control
33%
Voltage Regulator Module
33%
Voltage Sharing
66%
Engineering
Circuit Parameter
50%
Control Input
50%
Control Operation
50%
Conversion Ratio
50%
Current Output
50%
Dc Converter
50%
Dynamic Performance
50%
Experimental Result
50%
Feedback Control
100%
Feedback Loop
50%
Input Voltage
100%
Output Voltage
100%
Systems Performance
50%
Transients
50%
Voltage Regulator
50%