TY - JOUR
T1 - High Step-Up DC-DC Converter With Low Switch Voltage Stress, Continuous Input Current, and ZVS Operation
AU - Hajilou, Maryam
AU - Farzanehfard, Hosein
AU - Vahedi, Hani
PY - 2025
Y1 - 2025
N2 - This article introduces a new fully soft switched ultra-high step-up quadratic converter. The proposed converter benefits from several advanced features including high voltage gain at low duty cycle, low switch voltage stress, low sum of diodes voltage stress, switching at ZVS condition for switches, low ripple continuous input current, and common ground between the input and load. These advantages are achieved by integrating the quadratic structure with an auxiliary circuit consisting of coupled inductors, switched capacitors, and active clamp techniques. Furthermore, the presented converter mitigates the reverse recovery problem of all diodes especially the input side diodes which is a challenge in many quadratic base converters. These properties have contributed to providing an efficient converter with wide applicability. The converter is fully analyzed, its superiority to other structures is shown, and a 200 W laboratory prototype validates the theoretical analysis.
AB - This article introduces a new fully soft switched ultra-high step-up quadratic converter. The proposed converter benefits from several advanced features including high voltage gain at low duty cycle, low switch voltage stress, low sum of diodes voltage stress, switching at ZVS condition for switches, low ripple continuous input current, and common ground between the input and load. These advantages are achieved by integrating the quadratic structure with an auxiliary circuit consisting of coupled inductors, switched capacitors, and active clamp techniques. Furthermore, the presented converter mitigates the reverse recovery problem of all diodes especially the input side diodes which is a challenge in many quadratic base converters. These properties have contributed to providing an efficient converter with wide applicability. The converter is fully analyzed, its superiority to other structures is shown, and a 200 W laboratory prototype validates the theoretical analysis.
KW - High voltage gain converter
KW - low switch voltage stress
KW - ZVS operation
UR - http://www.scopus.com/inward/record.url?scp=86000386864&partnerID=8YFLogxK
U2 - 10.1109/OJPEL.2025.3532878
DO - 10.1109/OJPEL.2025.3532878
M3 - Article
AN - SCOPUS:86000386864
SN - 2644-1314
VL - 6
SP - 277
EP - 285
JO - IEEE Open Journal of Power Electronics
JF - IEEE Open Journal of Power Electronics
ER -