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      KCI등재 SCIE SCOPUS

      Analysis and Implementation of PS-PWAM Technique for Quasi Z-Source Multilevel Inverter

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      https://www.riss.kr/link?id=A105119461

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      다국어 초록 (Multilingual Abstract)

      Quasi Z-Source Multilevel Inverter (QZMLI) topology has attracted grid connected Photovoltaic (PV) systems in recent days. So there is a remarkable research thrust in switching techniques and control strategies of QZMLI. This paper presents the mathem...

      Quasi Z-Source Multilevel Inverter (QZMLI) topology has attracted grid connected Photovoltaic (PV) systems in recent days. So there is a remarkable research thrust in switching techniques and control strategies of QZMLI. This paper presents the mathematical analysis of Phase shift- Pulse Width Amplitude Modulation (PS-PWAM) for QZMLI and emphasizes on the advantages of the technique. The proposed technique uses the maximum and minimum envelopes of the reference waves for generation of pulses and proportion of it to generate shoot-through pulses. Hence, it results in maximum utilization of input voltage, lesser switching loss, reduced Total Harmonic Distortion (THD) of the output voltage, reduced inductor current ripple and capacitor voltage ripple. Due to these qualities, the QZMLI with PS-PWAM emerges to be the best suitable for PV based grid connected applications compared to Phase shift-Pulse Width Modulation (PS-PWM). The detailed math analysis of the proposed technique has been disclosed. Simulation has been performed for the proposed technique using MATLAB/Simulink. A prototype has been built to validate the results for which the pulses were generated using FPGA /SPARTAN 3E.

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      목차 (Table of Contents)

      • Abstract
      • 1. Introduction
      • 2. Quasi Z-Source Multilevel Inverter
      • 3. Pulse Width Amplitude Modulation
      • 4. Hardware Implementation
      • Abstract
      • 1. Introduction
      • 2. Quasi Z-Source Multilevel Inverter
      • 3. Pulse Width Amplitude Modulation
      • 4. Hardware Implementation
      • 5. Conclusion
      • References
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      참고문헌 (Reference)

      1 U. Supatti, "Z-source inverter with grid connected for wind power system" 398-403, 2010

      2 Peng F. Z., "Z-source inverter for motor drives" 20 (20): 857-863, 2005

      3 Peng F. Z., "Z-source inverter" 39 (39): 504-510, 2003

      4 Y. Huang, "Z-Source inverter for residential photovoltaic systems" 21 (21): 1776-1782, 2006

      5 R. Seyezhai, "Total Power Control for Quasi Z-Source Inverter based Grid Tie Single Phase Photovoltaic System" 11 (11): 59-66, 2015

      6 R. Seyezhai, "Study of Z-Source Inverter Impedance Networks using $2{\omega}$ Analysis for Photovoltaic Applications" 852 : 867-874, 2016

      7 Y. Liu, "Phaseshifted pulse-width amplitude modulation for quasi-Z-source cascade multilevel inverter based PV power system" 94-100, 2013

      8 Liu, Yushan, "Phase-shifted pulse-width-amplitude modulation for quasi-Z-source cascade multilevel inverter based PV power system" 94-100, 2013

      9 Rodriguez, "Multilevel inverters: a survey of topologies, controls, and applications" 49 (49): 724-738, 2002

      10 J.-S. Lai, "Multilevel converters - A new breed of power converters" 32 : 509-517, 1996

      1 U. Supatti, "Z-source inverter with grid connected for wind power system" 398-403, 2010

      2 Peng F. Z., "Z-source inverter for motor drives" 20 (20): 857-863, 2005

      3 Peng F. Z., "Z-source inverter" 39 (39): 504-510, 2003

      4 Y. Huang, "Z-Source inverter for residential photovoltaic systems" 21 (21): 1776-1782, 2006

      5 R. Seyezhai, "Total Power Control for Quasi Z-Source Inverter based Grid Tie Single Phase Photovoltaic System" 11 (11): 59-66, 2015

      6 R. Seyezhai, "Study of Z-Source Inverter Impedance Networks using $2{\omega}$ Analysis for Photovoltaic Applications" 852 : 867-874, 2016

      7 Y. Liu, "Phaseshifted pulse-width amplitude modulation for quasi-Z-source cascade multilevel inverter based PV power system" 94-100, 2013

      8 Liu, Yushan, "Phase-shifted pulse-width-amplitude modulation for quasi-Z-source cascade multilevel inverter based PV power system" 94-100, 2013

      9 Rodriguez, "Multilevel inverters: a survey of topologies, controls, and applications" 49 (49): 724-738, 2002

      10 J.-S. Lai, "Multilevel converters - A new breed of power converters" 32 : 509-517, 1996

      11 R. Seyezhai, "Modelling and Control of Quasi Z-source Cascaded H-Bridge Multilevel Inverter for Grid Connected Photovoltaic Systems" 90 : 250-259, 2016

      12 S. Thangaprakash, "Implementation and Critical Investigation on Modulation Schemes of Three Phase Impedance Source Inverter" 6 (6): 2010

      13 Yam P. Siwakoti, "Impedance-Source Networks for Electric Power Conversion Part II: Review of Control and Modulation Techniques" Institute of Electrical and Electronics Engineers (IEEE) 30 (30): 1887-1906, 2015

      14 Yam P. Siwakoti, "Impedance-Source Networks for Electric Power Conversion Part I: A Topological Review" Institute of Electrical and Electronics Engineers (IEEE) 30 (30): 699-716, 2015

      15 Anderson, Joel, "Four quasi-Zsource inverters" IEEE 2743-2749, 2008

      16 Jagan, Vadthya, "Enhanced-Boost Quasi-Z-Source Inverters with Two Switched Impedance Network" 2017

      17 Lei Pan, "ESL-Γ-Z- Source Inverter" 대한전기학회 9 (9): 589-599, 2014

      18 Ayad, Ayman, "Direct Model Predictive Current Control Strategy of Quasi-Z-Source Inverters" 32 (32): 5786-5801, 2017

      19 Shen M., "Constant boost control of the Z-source inverter to minimize current ripple and voltage stress" 42 (42): 770-778, 2006

      20 M. R. Banaei, "Asymmetric Cascaded Multi-level Inverter: A Solution to Obtain High Number of Voltage Levels" 대한전기학회 8 (8): 316-325, 2013

      21 Javad Gholinezhad, "Analysis of Cascaded H-Bridge Multilevel Inverter in DTC-SVM Induction Motor Drive for FCEV" 대한전기학회 8 (8): 304-315, 2013

      22 Y. Liu, "An effective control method for quasi-Z-source cascade multilevel inverter based grid-tie single-phase photovoltaic power system" 2013

      23 Y. Liu, "An effective control method for quasi-Z-source cascade multilevel inverter based grid-tie single-phase photovoltaic power system" 2013

      24 Kai Deng, "An Extended Switched-inductor Quasi-Z-source Inverter" 대한전기학회 9 (9): 541-549, 2014

      25 D. Sun, "A new grid connected PV system based on cascaded H-bridge quasi-Z source inverter" 951-956, 2012

      26 Yan Zhou, "A high-performance photovoltaic module-integrated converter (MIC) based on cascaded quasi-Z-source inverters (qZSI) using eGaN FETs" 28 (28): 2727-2738, 2013

      27 Yan Zhou, "A high-performance photovoltaic module-integrated converter (MIC) based on cascaded quasi-Z-source inverters (qZSI) using eGaN FETs" 28 (28): 2727-2738, 2013

      28 B. P. McGrath, "A comparison of multicarrier PWM strategies for cascaded and neutral point clamped multilevel inverters" 674-679, 2000

      29 Kang-Soon Ahn, "A Study on a Carrier Based PWM having Constant Common Mode Voltage and Minimized Switching Frequency in Three-level Inverter" 대한전기학회 11 (11): 393-404, 2016

      30 Alexandre Battiston, "A Novel Quasi-Z-Source Inverter Topology With Special Coupled Inductors for Input Current Ripples Cancellation" Institute of Electrical and Electronics Engineers (IEEE) 31 (31): 2409-2416, 2016

      31 Hoda Ghoreishy, "A Novel Pulse-Width and Amplitude Modulation (PWAM) Control Strategy for Power Converters" 전력전자학회 10 (10): 374-381, 2010

      32 Quoc-Nam Trinh, "A New Z-Source Inverter Topology with High Voltage Boost Ability" 대한전기학회 7 (7): 714-723, 2012

      33 Ali Ajami, "A New Topology of Multilevel Voltage Source Inverter to Minimize the Number of Circuit Devices and Maximize the Number of Output Voltage Levels" 대한전기학회 8 (8): 1328-1336, 2013

      34 Mohsen Aleenejad, "A New High-Switching-Frequency Modulation Technique to Improve the DC-Link Voltage Utilization in Multilevel Converters" Institute of Electrical and Electronics Engineers (IEEE) 64 (64): 1807-1817, 2017

      35 Mohsen Aleenejad, "A New High-Switching-Frequency Modulation Technique to Improve the DC-Link Voltage Utilization in Multilevel Converters" Institute of Electrical and Electronics Engineers (IEEE) 64 (64): 1807-1817, 2017

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      연월일 이력구분 이력상세 등재구분
      학술지등록 한글명 : Journal of Electrical Engineering & Technology(JEET)
      외국어명 : Journal of Electrical Engineering & Technology
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2006-01-01 평가 학술지 통합 (기타) KCI등재
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      학술지 인용정보
      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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