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Characterization of mono-and bifacially active semitransparent crystalline silicon solar cells under out-door operating conditions

机译:在室外工作条件下单和双面活性半透明晶体硅太阳能电池的表征

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The novel POWER (Polycrystalline Wafer Engineering Result) solar cell concept (Willeke et al., 1994) possesses interesting properties for the photovoltaic market. An optical semitransparency of up to 20 percent can be combined with a bifacial light-collecting activity. POWER cells have been characterized under standard test condition (STC) (Kuhn et al., 1998). Latest results show efficiencies of 12.7 percent for bifacial POWER cells with 11 percent optical transmittance and 11.2 percent for monofacial POWER cells with 18 percent transmittance (both on Cz-Si), best efficiencies on mc-Si are 12.0 percent respectively 10.0 percent. However, due to its semitransparency and bifacial activity this cell type is very sensitive to background reflections as well as to diffuse irradiation. These two parameters are not easy to control in STC-characterization. This paper presents IV-measurements of POWER solar cells under actual operating conditions. Mono- as well as bifacially active semitransparent solar cells have been characterized using natural sunlight on a specialised outdoor test facility (Durisch et al., 1998) and are compared to conventional solar cells. The results are in good agreement with the STC-measurements. The influence of different angles of irradiation and different types of background reflectors on the IV-characteristic has been investigated for fixed as well as for suntracked positioning.
机译:新颖的POWER(多晶晶片工程结果)太阳能电池概念(Willeke等,1994)为光伏市场提供了有趣的特性。高达20%的光学半透明性可与双面集光活动结合在一起。动力电池已在标准测试条件(STC)下进行了表征(Kuhn等,1998)。最新结果显示,透光率11%的双面POWER电池的效率为12.7%,透射率18%的单面POWER电池的效率为11.2%(均在Cz-Si上),mc-Si的最佳效率分别为12.0%和10.0%。但是,由于其半透明性和双面活性,这种细胞类型对背景反射以及漫射辐射非常敏感。这两个参数在STC特性中不容易控制。本文介绍了在实际工作条件下POWER太阳能电池的IV测量。已经在专门的室外测试设备上使用自然阳光表征了单面和双面活性半透明太阳能电池(Durisch等,1998),并将其与常规太阳能电池进行了比较。结果与STC测量结果非常吻合。对于固定和太阳跟踪定位,已经研究了不同的照射角度和不同类型的背景反射器对IV特性的影响。

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