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Performance Ratio of Crystalline Si and Triple Junction a-Si Thin Film Photovoltaic Modules for the Application to BIPVs

  • Cha, Hae-Lim (PV Module & Power System RnD Center, Department of Electrical Engineering, Konkuk University) ;
  • Ko, Jae-Woo (PV Module & Power System RnD Center, Department of Electrical Engineering, Konkuk University) ;
  • Lim, Jong-Rok (PV Module & Power System RnD Center, Department of Electrical Engineering, Konkuk University) ;
  • Kim, David-Kwangsoon (PV Module & Power System RnD Center, Department of Electrical Engineering, Konkuk University) ;
  • Ahn, Hyung-Keun (PV Module & Power System RnD Center, Department of Electrical Engineering, Konkuk University)
  • 투고 : 2016.12.23
  • 심사 : 2017.02.03
  • 발행 : 2017.02.25

초록

The building integrated photovoltaic system (BIPV) attracts attention with regard to the future of the photovoltaic (PV) industry. It is because one of the promising national and civilian projects in the country. Since land area is limited, there is considerable interest in BIPV systems with a variety of angles and shapes of PV panels. It is therefore expected to be one of the major fields for the PV industry in the future. Since the irradiation is different from each installation angle, the output can be predicted by the angles. This is critical for a PV system to be operated at maximum power and use an efficient design. The development characteristics of tilted angles based on data results obtained via long-term monitoring need to be analyzed. The ratio of the theoretically available and actual outputs is compared with the installation angles of each PV module to provide a suitable PV system for the user.

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참고문헌

  1. J. H. So, Y. S. Jung, B. G. Yu, G.J. Yu, and J. Y. Choi, JPE., 11, 22 (2006).
  2. D. Thevenard, Photovoltaic Specialists Conf. (IEEE, Anchorage, 2000). 1711.
  3. J. Bernreuter, Photon International, [DOI: http://www.photonmagazine.com] (2005).
  4. M. J. McCann, K. J. Weber, and A.W. Blakers, NGSC, 6, 135 (2001).
  5. J. H. So, J. Y. Choi, G. J. Yu, Y. S. Jung, and J. H. Choi, JKPS, 24 (2004).
  6. J. H. Song, J. H. Yoon, Y. S. An, S. G. Kim, S. J. Lee, and Y. K. Choung, KSES, 28 (2008).
  7. J.C. Lee and K.H. Yoon, KCERS, 8, 65 (2005).
  8. H.I. Kim, G.H. Kang, K.E. Park, J. H. So, G. J. Yu, and S. J. Suh, KSES, 29 (2009).
  9. J.H. Yoon, Y.S. An, J.H. Song, S.G. Kim, S.J. Lee, and Y.K. Choung, JAIK planning & design, 24 (2008).
  10. SMA Solar Technology AG, Performance ratio quality factor for the PV plant, [DOI: http://files.sma.de/dl/7680/Perfratio-TIen-11.pdf] (2011).
  11. N. Reich, B. Mueller, A. Armbruster, W. V. Sark, K. Keifer, and C. Reise, Prog Photovolt, 20, 717 (2012). https://doi.org/10.1002/pip.1219
  12. S. Ransome, J. Sutterlueti, and R. Kravets, In Proceedings of 37th IEEE (PVSC, Washington, 2011).
  13. C. Cañete, J. Carretero, and M. Sidrach., Energy, 65, 295 (2014). https://doi.org/10.1016/j.energy.2013.12.013
  14. A. Woyte, 28th European pv energy conference and exhibition (EUPVSEC, Villepinte, 2013).
  15. S. Hegedus, WIREs Energy and Environment, 2, 218 (2013). https://doi.org/10.1002/wene.61
  16. R. Eke and A. Senturk, Applied Energy, 109, 154 (2013). https://doi.org/10.1016/j.apenergy.2013.03.087
  17. C. P. Chioncel, L. Augustinov, P. Chioncel, N. Gillich, and G. O. Tirian, ACTA TECHNICA CORVINIENSIS-BULLETIN of ENGINEERING, 2, 55 (2009).