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    Improved DC Model and Transfer Functions for the Negative Output Elementary Super Lift Luo Converter

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    https://www.riss.kr/link?id=A103056910

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    Negative output elementary super lift Luo converter (NOESLLC), which has the significant advantages including high-voltage transfer gain, high efficiency, high power density, and reduced output voltage/inductor current ripples when compared to the traditional DC-DC converters, is an attractive DC-DC converter for the field of negative DC voltage applications. In this study, in consideration of the voltage across the energy transferring capacitor changing abruptly at the beginning of each switching cycle, the improved averaged model of the NOESLLC operating in continuous conduction mode (CCM) is established. The improved DC model and transfer functions of the system are derived and analyzed. The current mode control is applied for this NOESLLC. The results from the theoretical calculations, the PSIM simulations and the circuit experiments show that the improved DC model and transfer functions here are more effective than the existed ones of the NOESLLC to describe its real dynamical behaviors.
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    Negative output elementary super lift Luo converter (NOESLLC), which has the significant advantages including high-voltage transfer gain, high efficiency, high power density, and reduced output voltage/inductor current ripples when compared to the tra...

    Negative output elementary super lift Luo converter (NOESLLC), which has the significant advantages including high-voltage transfer gain, high efficiency, high power density, and reduced output voltage/inductor current ripples when compared to the traditional DC-DC converters, is an attractive DC-DC converter for the field of negative DC voltage applications. In this study, in consideration of the voltage across the energy transferring capacitor changing abruptly at the beginning of each switching cycle, the improved averaged model of the NOESLLC operating in continuous conduction mode (CCM) is established. The improved DC model and transfer functions of the system are derived and analyzed. The current mode control is applied for this NOESLLC. The results from the theoretical calculations, the PSIM simulations and the circuit experiments show that the improved DC model and transfer functions here are more effective than the existed ones of the NOESLLC to describe its real dynamical behaviors.

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    목차 (Table of Contents)

    • Abstract
    • 1. Introduction
    • 2. Circuit Operation and Some Glimpses
    • 3. Improved Averaged Model
    • 4. Current Mode Controlled NOESLLC
    • Abstract
    • 1. Introduction
    • 2. Circuit Operation and Some Glimpses
    • 3. Improved Averaged Model
    • 4. Current Mode Controlled NOESLLC
    • 5. Comparisons
    • 6. Circuit Experiments
    • 7. Conclusions
    • References
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    참고문헌 (Reference)

    1 M. G. Villalva, "Voltage Regulation of Photovoltaic Arrays : Smallsignal Analysis and Control Design" 3 (3): 869-880, 2010

    2 B. Axelrod, "Switchedcapacitor/Switched-inductor Structures for Getting Transformerless Hybrid DC-DC PWM Converters" 55 (55): 687-696, 2008

    3 V. Chamundeeswari, "Stabilization and Robustification of Negative Output Superlift Luo Converter using Sliding Mode Control Approach" 3 (3): 508-519, 2012

    4 "PSIM User’s Guide, Version 9.0, Release 3"

    5 M. R. D. Al-Mothafar, "On the Derivation of Control-to-output Voltage of PWM Current-Mode Controlled Modular DC-DC Converters : a PSIMSupported Proof" 139-146, 2014

    6 K. I. Hwu, "Negative-output KY Boost Converter" 272-274, 2009

    7 F. L. Luo, "Negative Output Super-lift Converters" 18 (18): 1113-1121, 2003

    8 K. R. Kumar, "Modelling and Implementation of Fixed Switching Frequency Sliding Mode Controller for Negative Output Elementary Super Lift Luo-converter" 5 (5): 1593-1604, 2012

    9 Y. K. Lo, "Improved Control-to-output Characteristics of a PWM Buckboost Converter" 39 : 203-209, 2011

    10 N. Femia, "Dynamic Model of One-cycle Control for Converters Operating in Continuous and Discontinuous Conduction Modes" 37 : 661-684, 2009

    1 M. G. Villalva, "Voltage Regulation of Photovoltaic Arrays : Smallsignal Analysis and Control Design" 3 (3): 869-880, 2010

    2 B. Axelrod, "Switchedcapacitor/Switched-inductor Structures for Getting Transformerless Hybrid DC-DC PWM Converters" 55 (55): 687-696, 2008

    3 V. Chamundeeswari, "Stabilization and Robustification of Negative Output Superlift Luo Converter using Sliding Mode Control Approach" 3 (3): 508-519, 2012

    4 "PSIM User’s Guide, Version 9.0, Release 3"

    5 M. R. D. Al-Mothafar, "On the Derivation of Control-to-output Voltage of PWM Current-Mode Controlled Modular DC-DC Converters : a PSIMSupported Proof" 139-146, 2014

    6 K. I. Hwu, "Negative-output KY Boost Converter" 272-274, 2009

    7 F. L. Luo, "Negative Output Super-lift Converters" 18 (18): 1113-1121, 2003

    8 K. R. Kumar, "Modelling and Implementation of Fixed Switching Frequency Sliding Mode Controller for Negative Output Elementary Super Lift Luo-converter" 5 (5): 1593-1604, 2012

    9 Y. K. Lo, "Improved Control-to-output Characteristics of a PWM Buckboost Converter" 39 : 203-209, 2011

    10 N. Femia, "Dynamic Model of One-cycle Control for Converters Operating in Continuous and Discontinuous Conduction Modes" 37 : 661-684, 2009

    11 J. C. Li, "Discontinuous Conduction Mode of Negative Output Elementary Circuit" 12 (12): 124-127, 2004

    12 K. R. Kumar, "Design and Implementation of Reduced-order Sliding Mode Controller Plus Proportional Double Integral Controller for Negative Output Elementary Super-lift Luo-converter" 6 (6): 974-989, 2013

    13 E. Jayashree, "Design and Implementation of Quasi Resonant-negative Output Super Lift Luo Converter" 10 : 127-134, 2010

    14 V. R. Indu, "Design and Implementation of Maximum Power Point Tracking for Super Lift Converter" 12-16, 2014

    15 K. R. Kumar, "Analysis, Design, and Implementation of Hysteresis Modulation Slidingmode Controller for Negative-output Elementary Boost Converter" 40 : 292-311, 2012

    16 C. Krishnakumar, "A New Random PWM Technique for Conducted-EMI Mitigation on Cuk Converter" 대한전기학회 10 (10): 916-924, 2015

    17 R. D. Middlebrook, "A General Unified Approach to Modeling Switching-converter Power Stages" 42 (42): 521-550, 1977

    18 E. H. Ismail, "A Family of Single-switch PWM Converters with High Step-up Conversion Ratio" 55 (55): 1159-1171, 2008

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    연월일 이력구분 이력상세 등재구분
    학술지등록 한글명 : Journal of Electrical Engineering & Technology(JEET)
    외국어명 : Journal of Electrical Engineering & Technology
    2023 평가 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
    2020-01-01 등재 등재학술지 유지 (해외등재 학술지 평가) KCI등재
    2011-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2009-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2006-01-01 등재 학술지 통합 (기타) KCI등재
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    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 0.45 0.21 0.39
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0.37 0.34 0.372 0.04
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