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Characterization of Photovoltaic Module Encapsulant According to UV Irradiation Dose

자외선 조사량에 따른 태양전지 모듈 봉지재의 특성 분석

  • Lee, Song-Eun (Department of Chemical engineering, Yeungnam University) ;
  • Bae, Joon-Hak (Photovoltaic Accredited Testing Center, Yeungnam University) ;
  • Shin, Jae-Won (Photovoltaic Accredited Testing Center, Yeungnam University) ;
  • Jeon, Chan-Wook (Department of Chemical engineering, Yeungnam University)
  • 이송은 (화학공학과, 영남대학교) ;
  • 배준학 (태양광공인시험센터, 영남대학교) ;
  • 신재원 (태양광공인시험센터, 영남대학교) ;
  • 전찬욱 (화학공학과, 영남대학교)
  • Received : 2018.07.20
  • Accepted : 2018.09.17
  • Published : 2018.09.30

Abstract

The photovoltaic modules installed in the actual field are affected by various external environments and the electrical performance output value is generally lowered compared to initial output value. The most of photovoltaic modules consists of low iron glass, encapsulant (EVA), back sheet, frame and junction box assembly based on the solar cells. In this paper, the characteristics of encapsulant which is an important constituent material of photovoltaic module were verified by maximum power determination, electro luminescence images, yellowness index measurement, and gel content measurement after ultraviolet (UV) irradiation exposure. The most commonly installed 72 cells crystalline photovoltaic modules were tested after various UV exposure of 0, 15, 30, and $60kWh/m^2$ and compared with the reference module. After UV exposure of $15kWh/m^2$, which is the current international test condition, a small amount of change was observed in yellowness index and electroluminescence, while a gell content rapidly increased. At a cumulative dose of $60kWh/m^2$, which will be a new international test condition in the near future, however, the yellowness index increased sharply and showed the greatest output power drop.

Keywords

References

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