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논문 기본 정보

자료유형
학술저널
저자정보
Hasnain Yousuf (Sungkyunkwan University) Muhammad Quddamah Khokhar (Sungkyunkwan University) Muhammad Aleem Zahid (Sungkyunkwan University) Jaeun Kim (Sungkyunkwan University) Youngkuk Kim (Sungkyunkwan University) Sung Bae Cho (SK Solar Energy) Young Hyun Cho (Sungkyunkwan University) Eun-Chel Cho (Sungkyunkwan University) Junsin Yi (Sungkyunkwan University)
저널정보
한국신재생에너지학회 신·재생에너지 신재생에너지 제17권 제1호(통권 제67호)
발행연도
2021.3
수록면
19 - 32 (14page)

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초록· 키워드

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Photovoltaic (PV) panels are generally treated as the most dependable components of PV systems; therefore, investigations are necessary to understand and emphasize the degradation of PV cells. In almost all specific deprivation models, humidity and temperature are the two major factors that are responsible for PV module degradation. However, even if the degradation mode of a PV module is determined, it is challenging to research them in practice. Long-term response experiments should thus be conducted to investigate the influences of the incidence, rates of change, and different degradation methods of PV modules on energy production; such models can help avoid lengthy experiments to investigate the degradation of PV panels under actual working conditions. From the review, it was found that the degradation rate of PV modules in climates where the annual average ambient temperature remained low was -1.05% to -1.16% per year, and the degree of deterioration of PV modules in climates with high average annual ambient temperatures was -1.35% to -1.46% per year; however, PV manufacturers currently claim degradation rates of up to -0.5% per year.

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ABSTRACT
1. Introduction
2. Year-on-year (YoY) degradation investigation technology
3. Photovoltaic module degradation
4. Effect of degradation rate on different weather regions
5. Solutions to minimize degradation rate
6. Conclusion
References

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UCI(KEPA) : I410-ECN-0101-2021-505-001548083