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Effect of oblique incidence angle of sunlight on the optimized folding angle of V-shaped organic solar cells
Institution:1. Department of Information Display and Advanced Display Research Center, Kyung Hee University, Seoul 130-701, Republic of Korea;2. Department of Information and Communications Engineering, Myongji University, Yongin, Gyeonggi-Do 449-728, Republic of Korea
Abstract:We numerically investigate the effect of the incidence angle of sunlight on the optimized folding angle of V-shaped organic solar cells (VOSCs) to obtain the best power conversion efficiency in a realistically operating environment. The light absorbance at the active layer is calculated based on the finite element method with respect to the incidence angle of sunlight and the folding angle of the VOSC. We calculate the generation energy density per day at each folding angle by integrating the angular response of the short-circuit current and the open-circuit voltage with the consideration of the variation of the incidence angle during daytime. We show that the optimized folding angle of the VOSC based on the variation of the generation energy density per day is close to that determined from the variation of the electric power density in normal incidence, which has been widely used to optimize the folding angle of VOSCs.
Keywords:Organic solar cell  Optical modeling  Finite element method  Optimization of folding angle
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