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이후승(Hu-Seung Lee),배한성(Han-Sung Bae),김성범(Seongbeom Kim),주윤재(Yun-Jae Joo),김정오(Jung-Oh Kim),노지환(Ji-Hwan Noh) 한국생산제조학회 2016 한국생산제조학회지 Vol.25 No.5
Recently, wireless charging systems have expanded their applications from household electrical appliances to outdoor activity devices. In wireless charging systems, solar cells have versatile advantages, such as abundant raw materials within the earth, reasonable prices of products, and highest power conversion efficiency. In this study, the photovoltaic effect between a silicon solar cell and a photon of infrared wavelength was simulated using a Shockley diode equation. A solar cell power charging system was then set up to: 1) clarify mechanisms of the charging interaction based on the photovoltaic effect with a laser source, and 2) verify interdependency of the parameters: laser settings and geometrical position between a solar cell and the laser. As was observed, the solar cell generates more power when the photon was irradiated uniformly, intensively, and vertically on the surface of the solar cell.