DOI QR코드

DOI QR Code

Research on Variable Constant Current Efficiency Measuring Device for Solar Panel to Reuse

태양광 패널 재사용을 위한 가변 정전류 기반의 효율 측정장치에 관한 연구

  • Received : 2022.10.25
  • Accepted : 2022.11.29
  • Published : 2023.02.28

Abstract

This paper relates to the development of a device for measuring the efficiency of a solar panel based on a variable constant current, and proposed a standard for reuse of the solar panel. By applying a variable constant current circuit to a solar panel efficiency measuring device, it was easy to apply a maximum power point tracking (MPPT) algorithm. In addition, a load dispersion method was applied to measure the efficiency of a high-capacity solar panel. and it is possible to solve a problematic thermal runaway during a MOSFET parallel operation by applying the load dispersion method. As a result of the experiment, the solar panel efficiency measuring device was able to accommodate a large solar panel of 350W, which is the maximum measurement goal. In this paper, the validity was confirmed through the 310W solar panel efficiency measurement experiment collected after removal.

Keywords

Acknowledgement

본 연구는 2023년도 지식경제부의 재원으로 한국에너지 기술평가원 (KETEP)의 지원을 받아 수행한 연구 과제임 (No. 20213030160110). 또한 본 연구는 과학기술정보통신부 및 정보통신기혹평가원의 지역지능화혁신인재양성 (GrandICT연구센터)사업의 결과로 수행되었으며 (IITP-2023-2020-0-01462), 2020년도 정부 (교육부)의 재원으로 한국연구재단의 지원을 받아 수행된 기초연구사업임 (No. 2020R1A6A1A12047945).

References

  1. 이상수, "태양광 폐패널의 재활용정책방향," 한국폐기물자원순환학회 심포지움 2018권 2호, pp. 87-95, 2018 (in Korean). 
  2. 김우일, "태양광발전 폐기물의 적정관리방안," 한국폐기물자원순환학회 심포지움 2018권 2호, pp. 97-108, 2018 (in Korean). 
  3. Boram Kim, Jinyoung Kang, Sinae Park, Jaemin Jang, Jong Ho Hong, "Study of Unit Cost Estimation for the Appropriate Treatment of End-of-life Photovoltaic (PV) Modules," Journal of Korean Society for New and Renewable Energy Vol. 15, No. 1 pp. 36-46, 2019 (in Korean).  https://doi.org/10.7849/ksnre.2019.3.15.1.036
  4. 한국에너지공단, "2020년 신.재생에너지 보급통계[2021년 공표] 결과 요약," 2021 (in Korean). 
  5. 김동환, "태양광 분야의 기술개발 및 산업화 전략," Journal of Korean Society for New and Renewable Energy Vol. 1 No. 1, pp. 8-14, 2005 (in Korean). 
  6. 산업자원부, "태양광 발전의 개발 및 보급전략," 2004 (in Korean). 
  7. E. H. Kim, S. W. Kang, J. E. Kim, "The Long-term Operating Evaluation of the Grid Connected Photovoltaic System," Journal of Korean Society for New and Renewable Energy Vol. 7, No. 2, pp. 28-35, 2011 (in Korean).  https://doi.org/10.7849/ksnre.2011.7.2.028
  8. 임송택, "태양광 폐 패널 발생 및 처리 동향," 코네틱 리포트, 2019 (in Korean). 
  9. 김태경, 김가영, "태양광 폐패널 재활용 기술," KISTEP 기술동향브리프, 2021 (in Korean). 
  10. T. L. Curtis, H. Buchanan, G. Heath, L. Smith, S. Shaw, "Solar Photovoltaic Module Recycling: A Survey of U.S. Policies and Initiatives," No. NREL/TP-6A20-74124. National Renewable Energy Lab.(NREL), Golden, CO (United States), 2021. 
  11. J. J. Kim, C. B. Kim, "Maximum Power Point Tracking of Photovoltaic Using Improved Particle Swarm Optimization Algorithm," Journal of Advanced Navigation Technology Vol. 24, No. 4, pp. 291-298, 2020 (in Korean).  https://doi.org/10.12673/JANT.2020.24.4.291
  12. J. S. Ko, D. H. Chung, "MPPT Control of Photovoltaic using Variable IC Method," Journal of the Korean Institute of Illuminating and Electrical Installation Engineers Vol. 26, No. 8, pp. 27-34, 2012 (in Korean).  https://doi.org/10.5207/JIEIE.2012.26.8.027
  13. J. S. Ko, D. H. Chung, "MPPT Control of PV System Using Improved PO Method," The Transactions of the Korean Institute of Electrical Engineers Vol. 63, No. 12, pp. 1649-1654, 2014 (in Korean).  https://doi.org/10.5370/KIEE.2014.63.12.1649
  14. G. B. Cho, Y. O. Choi, H. L Baek, "The Realization of MPPT Controller Using Fuzzy Controller for Photovoltaic System," Journal of the Korean Solar Energy Society Vol. 24, No. 2, pp. 89-96, 2004 (in Korean). 
  15. IRFP260N Data sheet - International Rectifier 
  16. Energy Sage https://news.energysage.com/shopping-solar-panels-pay-attention-to-solar-panels-warranty/, 2021.