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      KCI등재 SCIE SCOPUS

      Sliding Mode Control for Current Distribution Control in Paralleled Positive Output Elementary Super Lift Luo Converters

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      https://www.riss.kr/link?id=A82659729

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      다국어 초록 (Multilingual Abstract)

      This paper presents a Current Distribution Control design for Paralleled Positive Output Elementary Super Lift Luo Converters (PPOESLLCs) operated in Continuous Conduction Mode using a Sliding Mode Controller (SMC). Manipulating the higher current req...

      This paper presents a Current Distribution Control design for Paralleled Positive Output Elementary Super Lift Luo Converters (PPOESLLCs) operated in Continuous Conduction Mode using a Sliding Mode Controller (SMC). Manipulating the higher current requirement of the load through the paralleling of POESLLCs, results in a current inequality. This is mainly due to dissimilarities in the power semiconductor switches and circuit components used in POESLLCs, which may lead to converter failures. In order to balance the proper load current sharing and the load voltage regulation of PPOESLLCs, a SMC is developed. The SMC is designed for the inherently variable-structured of POESLLCs by using the state-space average based model. The static and dynamic performance of the developed controller with PPOESLLCs is validated for its robustness to perform over a wide range of operating conditions through both a laboratory prototype and MatLab/Simulink models, which are compared with a Proportional-Integral (PI) controller. Theoretical analysis, simulation and experimental results are presented to demonstrate the feasibility of the developed SMC along with the complete design procedure.

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      목차 (Table of Contents)

      • Abstract
      • Ⅰ. INTRODUCTION
      • Ⅱ. POESLLC AND MATHEMATICAL MODEL
      • Ⅲ. DESIGN OF THE SMC
      • Ⅳ. DESIGN CALCULATIONS OF CIRCUIT COMPONENTS AND CONTROLLER PARAMETERS
      • Abstract
      • Ⅰ. INTRODUCTION
      • Ⅱ. POESLLC AND MATHEMATICAL MODEL
      • Ⅲ. DESIGN OF THE SMC
      • Ⅳ. DESIGN CALCULATIONS OF CIRCUIT COMPONENTS AND CONTROLLER PARAMETERS
      • Ⅴ. SIMULATION RESULTS
      • Ⅵ. EXPERIMENTAL RESULTS
      • Ⅶ. CONCLUSIONS
      • ACKNOWLEDGMENT
      • REFERENCES
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      참고문헌 (Reference)

      1 R. A. De Carlo, "Variable structure control of nonlinear multivariable systems: A tutorial" 76 : 212-234, 1988

      2 O. Abutbul, "Step-up switching-mode converter with high voltage gain using a switchedcapacitor circuit" 50 (50): 1098-1102, 2003

      3 V. Biolkova, "State-space averaging (ssa) revisit d: on the accuracy of ssa-based line-to-output frequency responses of switched dc-dc converters" 9 (9): 81-90, 2010

      4 I. Utkin, "Sliding Mode and Their Application in Variable Structure Systems" MIR 1978

      5 정영석, "Sliding Mode Observer for Sensorless Control of IPMSM Drives" 전력전자학회 9 (9): 117-124, 2009

      6 G. Garcera, "Robust average current-mode control of multi-module parallel dc–dc PWM converter systems with improved dynamic response" 48 (48): 995-1005, 2001

      7 W. A. Tabisz, "Present and future of distributed power systems" 11-18, 1992

      8 L. Luo, "Positive output super lift converters" 18 (18): 105-113, 2003

      9 P. Comines, "PID controllers: recent tuning methods and design to specification" 149 (149): 46-53, 2002

      10 K. C. Tseng, "Novel high-efficiency step-up converter" 151 (151): 182-190, 2004

      1 R. A. De Carlo, "Variable structure control of nonlinear multivariable systems: A tutorial" 76 : 212-234, 1988

      2 O. Abutbul, "Step-up switching-mode converter with high voltage gain using a switchedcapacitor circuit" 50 (50): 1098-1102, 2003

      3 V. Biolkova, "State-space averaging (ssa) revisit d: on the accuracy of ssa-based line-to-output frequency responses of switched dc-dc converters" 9 (9): 81-90, 2010

      4 I. Utkin, "Sliding Mode and Their Application in Variable Structure Systems" MIR 1978

      5 정영석, "Sliding Mode Observer for Sensorless Control of IPMSM Drives" 전력전자학회 9 (9): 117-124, 2009

      6 G. Garcera, "Robust average current-mode control of multi-module parallel dc–dc PWM converter systems with improved dynamic response" 48 (48): 995-1005, 2001

      7 W. A. Tabisz, "Present and future of distributed power systems" 11-18, 1992

      8 L. Luo, "Positive output super lift converters" 18 (18): 105-113, 2003

      9 P. Comines, "PID controllers: recent tuning methods and design to specification" 149 (149): 46-53, 2002

      10 K. C. Tseng, "Novel high-efficiency step-up converter" 151 (151): 182-190, 2004

      11 K. Ogata, "Modern control engineering. Third Edition" Prentice – Hall of India Private Limited

      12 J. Rajagopalan, "Modeling and dynamic analysis of paralleled dc/dc converters with master–slave current sharing control" 678-684, 1996

      13 S. K. Mazumder, "Master–slave currentsharing control of a parallel dc–dc converter system over an rf communication interface" 55 (55): 59-66, 2008

      14 F. L. Luo, "Luo converters – voltage lift technique" 1783-1789, 1998

      15 B. Choi, "Dynamics and control of switch mode power conversion in distributed power systems" Virginia Polytechnic. Inst. State Univ 1992

      16 H. S. Ramirez, "Differential geometric methods in variable-structure control" 48 (48): 1359-1390, 1988

      17 Deshang Sha, "DSP Based Series-Parallel Connected Two Full-Bridge DC-DC Converter with Interleaving Output Current Sharing" 전력전자학회 10 (10): 673-679, 2010

      18 K. Siri, "Current distribution control for parallel connected converters: Part II" 28 : 841-851, 1992

      19 K. Siri, "Current distribution control for parallel connected converters: Part I" 28 : 829-840, 1992

      20 B. Choi, "Control strategy for multi-module parallel converter system" 225-234, 1990

      21 B.Choi, "Comparative study of paralleling schemes of converter modules for distributed power applications" 45 (45): 194-199, 1998

      22 A. Merdassi, "Automatic Generation of Average Models for Power Electronics Systems in VHDL-AMS and Modelica Modelling Languages" 1 (1): 176-186, 2010

      23 J. J. E. Slotine, "Applied Nonlinear Control" Prentice-Hall 1991

      24 Fang Lin Luo, "Advanced DC/DC Converters" CRC Press

      25 K.J.Astrom and B, "Adaptive Control" Addison-Wesley 1995

      26 M. M. Jovanovic, "A novel, low-cost implementation of democratic load-current sharing of paralleled converter modules" 11 (11): 604-611, 1996

      27 R. O. C’aceres, "A boost dc–ac converter: analysis, design, and experimentation" 14 (14): 134-144, 1999

      28 Yiwen He, "A Novel Scheme for Sliding-Mode Control of DC-DC Converters with a Constant Frequency Based on the Averaging Model" 전력전자학회 10 (10): 1-8, 2010

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