能源危機以及溫室效應的影響逐漸地威脅到人類的居住環境,以致人類必須尋求更節省與潔淨的替代性能源,以降低對石化燃料的依賴。我們利用太陽光取之不盡用之不竭的特性,以太陽能光伏系統(Photo Voltaic, PV)收集太陽光能做為發電的來源,可以分散台灣尖峰負載的電力供應;再搭配節能環保的照明產品,將可幫助人類解決一部份的能源短缺問題。有機發光二極體(Organic Light Emitting Diode, OLED),主要是由有機材料構成,不含汞污染,高發光效率低驅動電壓、且體積輕、薄、可繞曲的特性,應用其平面發光的特性於固態照明系統上,取代傳統式的照明設備,達到省電、減少重金屬污染的問題。本文是嘗試將兩者整合,以PSpice軟體模擬設計出整體電路模型。在PV與OLED之間,我們使用返馳式(Flyback)直流轉換器的電路設計來驅動OLED Lighting。以期未來應用於商品化的領域,並提供 PV及OLED照明系統的設計規範。
Energy crisis and global warming weather impact human living environment gradually. In order to reduce consuming of fossil fuels, we have to seeking more economical and clean energy source for alternation. As we know the advantage of inexhaustible solar energy, it’s worth to collection and transfer electricity via photo voltaic (PV) effect. Thus, intergrades PV system and products of Organic Light Emitting Diode (OLED) lighting that not only beneficial help solve energy crisis problem, but also achieve power saving and environment protection goal. Due to OLED is mainly constituted by the organic material without mercury pollution. The characteristic of slight, flexible, high luminescence efficiency, low power consumption and plane light. Thus the OLED light can replace conventional lamps, saving power, and reducing enviroment pollution. This thesis is trying to integrate both of them using Pspice software to establish the circuit model. Finally, the author adopts a fly back DC-DC converter to driving OLED Lighting module. The proposed system can be applied in commercial product. Further, it also provides a design guide line in such system.