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    반고정식 PV 시스템의 운영 스케줄 도출 및 그에 따른 발전 효율 변화 고찰 = Optimal Operation Schedule of Semi-Fixed PV System and Its Effect on PV Power Generation Efficiency

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    https://www.riss.kr/link?id=A104985423

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    The amount of solar irradiation obtained by a photovoltaic (PV) solar panel is the major factor determining the power generated by a PV system, and the array tilt angle is critical for maximizing panel radiation acquisition. There are three types of PV systems based on the manner of setting the array tilt angle: fixed, semi-fixed, and tracking systems. A fixed system cannot respond to seasonal solar altitude angle changes, and therefore cannot absorb the maximum available solar radiation. The tracking system continually adjusts the tilt angle to absorb the maximum available radiation, but requires additional cost for equipment, installation, operation, and maintenance. The semi-fixed system is only adjusted periodically (usually seasonally) to obtain more energy than a fixed system at an overall cost that is less than a tracking system. To maximize semi-fixed system efficiency, determining the optimal tilt angle adjustment schedule are required. In this research, we conducted a simulation to derive an optimal operation schedule for a semi-fixed system in Seoul, Korea (latitude 37.5˚). We implemented a solar radiation acquisition model and PV genereation model on MATLAB. The optimal operation schedule was derived by changing the number of tilt angle adjustments throughout a year using a Dynamic Algorithm. The results show that adjusting the tilt angle 4 times a year was the most appropriate. and then, generation amount of PV system increased 2.80% compared with the fixed system. This corresponds to 99% compared to daily adjustment m
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    The amount of solar irradiation obtained by a photovoltaic (PV) solar panel is the major factor determining the power generated by a PV system, and the array tilt angle is critical for maximizing panel radiation acquisition. There are three types of P...

    The amount of solar irradiation obtained by a photovoltaic (PV) solar panel is the major factor determining the power generated by a PV system, and the array tilt angle is critical for maximizing panel radiation acquisition. There are three types of PV systems based on the manner of setting the array tilt angle: fixed, semi-fixed, and tracking systems. A fixed system cannot respond to seasonal solar altitude angle changes, and therefore cannot absorb the maximum available solar radiation. The tracking system continually adjusts the tilt angle to absorb the maximum available radiation, but requires additional cost for equipment, installation, operation, and maintenance. The semi-fixed system is only adjusted periodically (usually seasonally) to obtain more energy than a fixed system at an overall cost that is less than a tracking system. To maximize semi-fixed system efficiency, determining the optimal tilt angle adjustment schedule are required. In this research, we conducted a simulation to derive an optimal operation schedule for a semi-fixed system in Seoul, Korea (latitude 37.5˚). We implemented a solar radiation acquisition model and PV genereation model on MATLAB. The optimal operation schedule was derived by changing the number of tilt angle adjustments throughout a year using a Dynamic Algorithm. The results show that adjusting the tilt angle 4 times a year was the most appropriate. and then, generation amount of PV system increased 2.80% compared with the fixed system. This corresponds to 99% compared to daily adjustment m

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    참고문헌 (Reference)

    1 유권종, "전문가시스템을 이용한 태양광 어레이의 최적설치 각도에 관한 연구" 한국태양에너지학회 27 (27): 107-116, 2007

    2 김동수, "건물적용 태양광발전시스템의 국내 지역에 따른 설치각도별 연간 전력생산량 예측에 관한 연구" 한국생태환경건축학회 14 (14): 67-74, 2014

    3 Jinqing P., "Validation of the Sandia Model with Indoor and Outdoor Measurements for Semi-transparent Amorphous Silicon PV Modules" 80 : 316-323, 2015

    4 Duffie, J, "Solar Engineering of Thermal Processes" John Wiley &ons Inc 2006

    5 David L., "Sandia pv array performance model" Sandia National Laboratories 2004

    6 강수현, "PV 시스템이 설치된 대학건물의 전력 생산에 따른 신재생에너지 공급비율 분석" 한국태양에너지학회 32 (32): 50-57, 2012

    7 Kwak, I., "Optimal Operation Schedule for Semi-fixed PV System" 2017

    8 Tarek O. K., "On the Estimation of the Optimum Tilt Angle of PV Panel in Saudi Arabia" 65 : 626-634, 2016

    9 Milan, D, "Comparison of Optimum Tilt Angles of Solar Collectors Determined at Yearly, Seasonal and Monthly Levels" 97 : 121-131, 2015

    10 Korea Energy Economics Institute, "A renewable energy supply statistics"

    1 유권종, "전문가시스템을 이용한 태양광 어레이의 최적설치 각도에 관한 연구" 한국태양에너지학회 27 (27): 107-116, 2007

    2 김동수, "건물적용 태양광발전시스템의 국내 지역에 따른 설치각도별 연간 전력생산량 예측에 관한 연구" 한국생태환경건축학회 14 (14): 67-74, 2014

    3 Jinqing P., "Validation of the Sandia Model with Indoor and Outdoor Measurements for Semi-transparent Amorphous Silicon PV Modules" 80 : 316-323, 2015

    4 Duffie, J, "Solar Engineering of Thermal Processes" John Wiley &ons Inc 2006

    5 David L., "Sandia pv array performance model" Sandia National Laboratories 2004

    6 강수현, "PV 시스템이 설치된 대학건물의 전력 생산에 따른 신재생에너지 공급비율 분석" 한국태양에너지학회 32 (32): 50-57, 2012

    7 Kwak, I., "Optimal Operation Schedule for Semi-fixed PV System" 2017

    8 Tarek O. K., "On the Estimation of the Optimum Tilt Angle of PV Panel in Saudi Arabia" 65 : 626-634, 2016

    9 Milan, D, "Comparison of Optimum Tilt Angles of Solar Collectors Determined at Yearly, Seasonal and Monthly Levels" 97 : 121-131, 2015

    10 Korea Energy Economics Institute, "A renewable energy supply statistics"

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    2023 평가 재인증평가 신청대상 (재인증)
    2020-01-01 등재 등재학술지 선정 (재인증) KCI등재
    2019-01-01 등재 등재후보학술지 유지 (계속평가) KCI등재후보
    2018-01-01 등재 등재후보학술지 유지 (계속평가) KCI등재후보
    2017-12-01 등재 등재후보로 하락 (계속평가) KCI등재후보
    2013-01-01 등재 등재학술지 유지 (등재유지) KCI등재
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