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      KCI등재 SCIE SCOPUS

      Single Sensor Charging System with MPPT Capability for Standalone Streetlight Applications

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      https://www.riss.kr/link?id=A101879624

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      다국어 초록 (Multilingual Abstract)

      Maximum power point tracking (MPPT) and battery charging control are two important functions for a solar battery charger. The former improves utilization of the available solar energy, while the latter ensures a prolonged battery life. Nevertheless, complete implementation of both functions can be complex and costly, especially for low voltage application such as standalone street lamps. In this paper, the operation of a solar battery charger for standalone street light systems is investigated. Using only one voltage sensor, the solar charger is able to operate in both MPPT and constant voltage (CV) charging mode, hence providing high performance at a low cost. Using a lab prototype and a solar simulator, the operation of the charger system is demonstrated and its performance under varying irradiance is validated.
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      Maximum power point tracking (MPPT) and battery charging control are two important functions for a solar battery charger. The former improves utilization of the available solar energy, while the latter ensures a prolonged battery life. Nevertheless, c...

      Maximum power point tracking (MPPT) and battery charging control are two important functions for a solar battery charger. The former improves utilization of the available solar energy, while the latter ensures a prolonged battery life. Nevertheless, complete implementation of both functions can be complex and costly, especially for low voltage application such as standalone street lamps. In this paper, the operation of a solar battery charger for standalone street light systems is investigated. Using only one voltage sensor, the solar charger is able to operate in both MPPT and constant voltage (CV) charging mode, hence providing high performance at a low cost. Using a lab prototype and a solar simulator, the operation of the charger system is demonstrated and its performance under varying irradiance is validated.

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      목차 (Table of Contents)

      • Abstract
      • I. INTRODUCTION
      • II. REVIEW ON SOLAR BATTERY CHARGER CONTROL
      • III. SINGLE SENSOR SOLAR BATTERY CHARGER
      • IV. SYSTEM ANALYSIS
      • Abstract
      • I. INTRODUCTION
      • II. REVIEW ON SOLAR BATTERY CHARGER CONTROL
      • III. SINGLE SENSOR SOLAR BATTERY CHARGER
      • IV. SYSTEM ANALYSIS
      • V. RESULTS AND DISCUSSION
      • VI. CONCLUSIONS
      • REFERENCES
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      참고문헌 (Reference)

      1 N. Dasgupta, "Voltage-sensing-based photovoltaic MPPT with improved tracking and drift avoidance capabilities" 92 (92): 1552-1558, 2008

      2 Z. Salam, "The application of soft computing methods for MPPT of PV system: A technological and status review" 107 : 135-148, 2013

      3 N. R Velaga, "Techno-economic evaluation of the feasibility of a smart street light system: a case study of rural India" 62 : 1220-1224, 2012

      4 M. Bortolini, "Technical and economic design of photovoltaic and battery energy storage system" 86 : 81-92, 2014

      5 G. Liu, "Sustainable feasibility of solar photovoltaic powered street lighting systems" 56 : 168-174, 2014

      6 B. W. Williams, "Power electronics: devices, drivers, applications, and passive components" Glasgow 1020-, 2006

      7 R. Panguloori, "Power distribution architectures to improve system efficiency of centralized medium scale PV street lighting system" 97 : 405-413, 2013

      8 H. Hsieh, "Photovoltaic burp charge system on energy-saving configuration by smart charge management" 29 (29): 1777-1790, 2014

      9 N. Femia, "Optimization of perturb and observe maximum power point tracking method" 20 (20): 963-973, 2005

      10 D. Shmilovitz, "On the control of photovoltaic maximum power point tracker via output parameters" 239-248, 2005

      1 N. Dasgupta, "Voltage-sensing-based photovoltaic MPPT with improved tracking and drift avoidance capabilities" 92 (92): 1552-1558, 2008

      2 Z. Salam, "The application of soft computing methods for MPPT of PV system: A technological and status review" 107 : 135-148, 2013

      3 N. R Velaga, "Techno-economic evaluation of the feasibility of a smart street light system: a case study of rural India" 62 : 1220-1224, 2012

      4 M. Bortolini, "Technical and economic design of photovoltaic and battery energy storage system" 86 : 81-92, 2014

      5 G. Liu, "Sustainable feasibility of solar photovoltaic powered street lighting systems" 56 : 168-174, 2014

      6 B. W. Williams, "Power electronics: devices, drivers, applications, and passive components" Glasgow 1020-, 2006

      7 R. Panguloori, "Power distribution architectures to improve system efficiency of centralized medium scale PV street lighting system" 97 : 405-413, 2013

      8 H. Hsieh, "Photovoltaic burp charge system on energy-saving configuration by smart charge management" 29 (29): 1777-1790, 2014

      9 N. Femia, "Optimization of perturb and observe maximum power point tracking method" 20 (20): 963-973, 2005

      10 D. Shmilovitz, "On the control of photovoltaic maximum power point tracker via output parameters" 239-248, 2005

      11 E. Koutroulis, "Novel battery charging regulation system for photovoltaic applications" 191-197, 2004

      12 V. Salas, "New algorithm using only one variable measurement applied to a maximum power point tracker" 87 (87): 675-684, 2005

      13 N. a. Kelly, "Increasing the solar photovoltaic energy capture on sunny and cloudy days" 85 (85): 111-125, 2011

      14 류동근, "Flyback Inverter Using Voltage Sensorless MPPT for Photovoltaic AC Modules" 전력전자학회 14 (14): 1293-1302, 2014

      15 M. S. Wu, "Economic feasibility of solar-powered led roadway lighting" 34 (34): 1934-1938, 2009

      16 D. Fendri, "Dynamic model to follow the state of charge of a lead-acid battery connected to photovoltaic panel" 64 : 587-593, 2012

      17 박선재, "Dynamic Analysis and Controller Design for Standalone Operation of Photovoltaic Power Conditioners with Energy Storage" 대한전기학회 9 (9): 2004-2012, 2014

      18 B.-J. Huang, "Direct battery-driven solar LED lighting using constant-power control" 86 (86): 3250-3259, 2012

      19 O. S. Sastry, "Development of white LED based PV lighting systems" 94 (94): 1430-1433, 2010

      20 B. J. Huang, "Development of high-performance solar LED lighting system" 51 (51): 1669-1675, 2010

      21 Milad Momayyezan, "Developed MPPT Algorithm for Photovoltaic Systems without a Voltage Sensor" 전력전자학회 13 (13): 1042-1050, 2013

      22 T.-T. Nguyen, "Design and implementation of the low cost and fast solar charger with the rooftop PV array of the vehicle" 96 : 83-95, 2013

      23 S. Armstrong, "Comparison of battery charging algorithms for stand alone photovoltaic systems" 1469-1475, 2008

      24 D. P. Hohm, "Comparative study of maximum power point tracking algorithms" 11 (11): 47-62, 2003

      25 Y. Du, "Battery-integrated boost converter utilizing distributed MPPT configuration for photovoltaic systems" 85 (85): 1992-2002, 2011

      26 M. A. Elgendy, "Assessment of the incremental conductance maximum power point tracking algorithm" 4 (4): 108-117, 2013

      27 M. Z. Daud, "An improved control method of battery energy storage system for hourly dispatch of photovoltaic power sources" 73 : 256-270, 2013

      28 Y. Jiang, "Adaptive step size with adaptive-perturbation- frequencydigital MPPT controller for a single-sensor photovoltaic solar system" 28 (28): 3195-3205, 2013

      29 O. Guenounou, "Adaptive fuzzy controller based MPPT for photovoltaic systems" 78 : 843-850, 2014

      30 H.-I. Hsieh, "A study of high-frequency photovoltaic pulse charger for lead-acid battery guided by PI-INC MPPT" 1 : 1-6, 2012

      31 A. Pandey, "A simple single-sensor MPPT solution" 22 (22): 698-700, 2007

      32 H. L. Chan, "A new battery model for use with battery energy storage Systems and electric vehicles power systems" 1 : 470-475, 2000

      33 M. Bhatt, "A new approach to intermittent charging of valve-regulated lead - acid batteries in standby applications" 52 (52): 1337-1342, 2005

      34 M. H. Taghvaee, "A current and future study on non-isolated DC-DC converters for photovoltaic applications" 17 : 216-227, 2013

      35 B. Subudhi, "A comparative study on maximum power point tracking techniques for photovoltaic power systems" 4 (4): 89-98, 2013

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2014-10-08 학술지명변경 한글명 : 전력전자학회 영문논문지 -> Journal of Power Electronics KCI등재
      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2007-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2006-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2004-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.83 0.54 0.74
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.65 0.62 0.382 0.06
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