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      KCI등재 SCIE SCOPUS

      Interleaved ZVS Resonant Converter with a Parallel-Series Connection

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      https://www.riss.kr/link?id=A60227725

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      다국어 초록 (Multilingual Abstract)

      This paper presents an interleaved resonant converter with a parallel-series transformer connection in order to achieve ripple current reduction at the output capacitor, zero voltage turn-on for the active switches, zero current turn-off for the recti...

      This paper presents an interleaved resonant converter with a parallel-series transformer connection in order to achieve ripple current reduction at the output capacitor, zero voltage turn-on for the active switches, zero current turn-off for the rectifier diodes, less voltage stress on the rectifier diodes, and less current stress on the transformer primary windings. The primary windings of the two transformers are connected in parallel in order to share the input current and to reduce the root-mean-square (rms) current on the primary windings. The secondary windings of the two transformers are connected in series in order to ensure that the transformer primary currents are balanced. A full-wave diode rectifier is used at the output side to clamp the voltage stress of the rectifier diode at the output voltage. Two circuit modules are operated with the interleaved PWM scheme so that the input and output ripple currents are reduced. Based on the resonant behavior, all of the active switches are turned on under zero voltage switching (ZVS), and the rectifier diodes are turned off under zero current switching (ZCS) if the operating switching frequency is less than the series resonant frequency. Finally, experiments with a 1kW prototype are described to verify the effectiveness of the proposed converter.

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      목차 (Table of Contents)

      • Abstract
      • I. INTRODUCTION
      • II. CIRCUIT CONFIGURATION
      • III. OPERATION PRINCIPLE AND SYSTEM ANALYSIS
      • IV. EXPERIMENTAL RESULTS
      • Abstract
      • I. INTRODUCTION
      • II. CIRCUIT CONFIGURATION
      • III. OPERATION PRINCIPLE AND SYSTEM ANALYSIS
      • IV. EXPERIMENTAL RESULTS
      • V. CONCLUSION
      • ACKNOWLEDGMENT
      • REFERENCES
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      참고문헌 (Reference)

      1 Y. Gu, "Three-level LLC series resonant DC/DC converter" 20 : 781-789, 2005

      2 M. K. Kazimierczuk, "Synthesis of phase-modulated dc/ac inverters and dc/dc converters" 139 (139): 387-394, 1992

      3 M. K. Kazimierczuk, "Resonant Power Converters, Chap. 9 and 18" John Wiley & Sons 2011

      4 김재형, "Power Loss Analysis of Interleaved Soft Switching Boost Converter for Single-Phase PV-PCS" 전력전자학회 10 (10): 335-341, 2010

      5 D. Czarkowski, "Phase-controlled CLL resonant converter" 432-438, 1993

      6 문건우, "Novel Two-Phase Interleaved LLC Series-Resonant Converter Using a Phase of the Resonant Capacitor" IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC 56 (56): 1815-1819, 200905

      7 G. B. Koo, "New zero-voltage-switching phase-shift full-bridge converter with low conduction losses" 52 (52): 228-235, 2005

      8 J. C. P. Liu, "Low output ripple dc-dc converter based on an overlapping dual asymmetric half-bridge topology" 22 (22): 1956-1963, 2007

      9 Bor-Ren Lin, "Interleaved DC-DC Converters with Partial Ripple Current Cancellation" 전력전자학회 12 (12): 249-257, 2012

      10 K. Jin, "Hybrid full-bridge three-level LLC resonant converter - A novel dc-dc converter suitable for fuel-cell power system" 53 (53): 1492-1503, 2006

      1 Y. Gu, "Three-level LLC series resonant DC/DC converter" 20 : 781-789, 2005

      2 M. K. Kazimierczuk, "Synthesis of phase-modulated dc/ac inverters and dc/dc converters" 139 (139): 387-394, 1992

      3 M. K. Kazimierczuk, "Resonant Power Converters, Chap. 9 and 18" John Wiley & Sons 2011

      4 김재형, "Power Loss Analysis of Interleaved Soft Switching Boost Converter for Single-Phase PV-PCS" 전력전자학회 10 (10): 335-341, 2010

      5 D. Czarkowski, "Phase-controlled CLL resonant converter" 432-438, 1993

      6 문건우, "Novel Two-Phase Interleaved LLC Series-Resonant Converter Using a Phase of the Resonant Capacitor" IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC 56 (56): 1815-1819, 200905

      7 G. B. Koo, "New zero-voltage-switching phase-shift full-bridge converter with low conduction losses" 52 (52): 228-235, 2005

      8 J. C. P. Liu, "Low output ripple dc-dc converter based on an overlapping dual asymmetric half-bridge topology" 22 (22): 1956-1963, 2007

      9 Bor-Ren Lin, "Interleaved DC-DC Converters with Partial Ripple Current Cancellation" 전력전자학회 12 (12): 249-257, 2012

      10 K. Jin, "Hybrid full-bridge three-level LLC resonant converter - A novel dc-dc converter suitable for fuel-cell power system" 53 (53): 1492-1503, 2006

      11 M. K. Kazimierczuk, "Class D voltage-switching inverter with tapped resonant inductor" 140 (140): 177-185, 1993

      12 B.-R. Lin, "Analysis of parallel-connected asymmetrical soft-switching converter" 54 (54): 1642-1653, 2008

      13 B. R. Lin, "Analysis and implementation of an active clamping zero-voltage turn-on switching /zero-current turn-off switching converter" 3 (3): 429-437, 2010

      14 A. K. S. Bhat, "Analysis and design of a modified series resonant converter" 8 (8): 423-430, 1993

      15 김인동, "Analysis and Design of a Soft-Switched PWM Sepic DC-DC Converter" 전력전자학회 10 (10): 461-467, 2010

      16 홍성수, "Analysis and Design of a High Voltage Flyback Converter with Resonant Elements" 전력전자학회 10 (10): 107-114, 2010

      17 H.-J. Chiu, "A single-stage phase-shifted full-bridge AC/DC converter with variable frequency control" 38 (38): 867-879, 2010

      18 D. Fu, "A novel driving scheme for synchronous rectifiers in LLC resonant converters" 24 (24): 1321-1329, 2009

      19 P. Das, "A Nonisolated Bidirectional ZVS-PWM active clamped DC–DC converter" 24 (24): 553-558, 2009

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      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
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      2004-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      0.65 0.62 0.382 0.06
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