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Lateral translation micro-tracking of planar micro-optic solar concentrator

机译:平面翻译微型跟踪平面微型光视太阳能聚光器

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High-concentration photo-voltaic systems focus incident sunlight by hundreds of times by combining focusing lenses with accurate, dual-axis solar tracking. Conventional systems mount large optical arrays on expensive tracking pedestals to maintain normal incidence throughout the day. A recently proposed micro-optic solar concentrator utilizes a two-dimensional lens array focusing into a planar slab waveguide. Localized mirrors fabricated on the waveguide surface reflect focused sunlight into guided modes which propagate towards an edge-mounted photovoltaic cell. This geometry enables a new method of solar tracking by laterally translating the waveguide with respect to the lens array to capture off-axis illumination. Using short focal length lenses, translations on the order of millimeters can efficiently collect 70° full-angle incident fields. This allows for either one or two-axis tracking systems where the small physical motion is contained within the physical footprint of a fixed solar panel. Here, we experimentally demonstrate lateral micro tracking for off-axis light collection using table-mounted components. We also present a novel tracking frame based on de-centered cams and describe a lens configuration optimized for off-axis coupling.
机译:通过将聚焦镜头与精确的双轴太阳能跟踪相结合,高浓度的光伏系统将入射的阳光聚焦数百次。传统的系统在昂贵的跟踪基座上安装大型光学阵列,以保持全天的正常发病率。最近提出的微型光视太阳能集中器利用将聚焦到平面板波导的二维透镜阵列。在波导表面上制造的局部镜子将聚焦的阳光反射到朝向边缘安装的光伏电池中传播的引导模式。该几何形状通过横向平移到透镜阵列以捕获轴轴阵列来实现新的太阳能跟踪方法。使用短焦距镜头,毫米的翻译可以有效地收集70°全角度事件场。这允许一个或两个轴跟踪系统,其中小物理运动包含在固定太阳能电池板的物理占地面积内。在这里,我们通过表安装组件实验地展示了偏离轴光收集的横向微型跟踪。我们还基于以居中凸轮提供了一种新颖的跟踪框,并描述了针对轴外耦合优化的镜头配置。

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