首页> 外文会议>Photonics for solar energy systems III >Increasing Fluorescent Concentrator Light Collection Efficiency by Restricting the Angular Emission Characteristic of the Incorporated Luminescent Material - the 'Nano-Fluko' Concept
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Increasing Fluorescent Concentrator Light Collection Efficiency by Restricting the Angular Emission Characteristic of the Incorporated Luminescent Material - the 'Nano-Fluko' Concept

机译:通过限制掺入的发光材料的角发射特性来提高荧光聚光器的集光效率-'Nano-Fluko'概念

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摘要

Fluorescent concentrators concentrate both diffuse and direct radiation without requiring tracking of the sun. In fluorescent concentrators, luminescent materials embedded in a transparent matrix absorb sunlight and emit radiation with a different wavelength. Total internal reflection traps the emitted light and guides it to solar cells attached to the concentrator's edges. The escape cone of total internal reflection, however, limits the light collection efficiency. Spectrally selective photonic structures, which transmit light in the absorption range of the luminescent material and reflect the emitted light, reduce these losses. In this paper, we review different realizations of such structures and show that they increase collection efficiency by 20%. However, light emitted into steep angles in respect to the front surface, which would be lost without the photonic structures, has a very long effective path inside the concentrator until it reaches a solar cell. Therefore it suffers from path length dependent losses. We discuss how emission into the unfavorable directions can be suppressed by integrating the luminescent material into photonic structures, thus reducing these losses. We present possible realizations both for the concentrator design and for the solar cells used in such systems.
机译:荧光聚光器可集中散射和直接辐射,而无需跟踪太阳。在荧光聚光器中,嵌入透明基质中的发光材料吸收日光并发出不同波长的辐射。内部全反射会捕获发出的光,并将其引导到附着在集中器边缘的太阳能电池。然而,全内反射的逃逸锥限制了光收集效率。在发光材料的吸收范围内透射光并反射发出的光的光谱选择性光子结构减少了这些损耗。在本文中,我们回顾了此类结构的不同实现,并表明它们将收集效率提高了20%。但是,相对于前表面发射的陡峭角度的光(如果没有光子结构,这些光会丢失)在聚光器内部具有非常长的有效路径,直到到达太阳能电池为止。因此,它遭受与路径长度有关的损耗。我们讨论了如何通过将发光材料集成到光子结构中来抑制向不利方向的发射,从而减少这些损耗。我们提出了集中器设计以及此类系统中使用的太阳能电池的可能实现。

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