Bouchard Sébastien, Thibault Simon
Opt Express. 2014 Mar 10;22(5):A248-58.
It is generally accepted that small to medium level concentrators could be used as cost-competitive replacements for tracked solar panels. The objective is to design a system that can reach a good level of sun concentration with only one sun-tracking axis and is cheap to fabricate. As the most critical parameter for all concentrator designs, optical efficiency needed improvement to reduce the cost of power produced by our system. By using a graded-index planar waveguide with an index profile similar to SELFOC fiber, the ray’s path can be controlled. Also, the concentrator can be fabricated in a single block, which reduces Fresnel reflections. Overall, the optical efficiency can be improved by as much as 33% compared to the same system made with a homogeneous waveguide. Furthermore, the ability to cost-effectively fabricate the concentrator by molding can be preserved, making it possible to reduce the cost of the solar power produced.
人们普遍认为,中小型聚光器可以作为具有成本竞争力的产品,替代跟踪式太阳能板。目标是设计一种系统,该系统仅通过一个太阳跟踪轴就能实现良好的太阳聚光水平,并且制造成本低廉。作为所有聚光器设计中最关键的参数,光学效率需要提高,以降低我们系统产生的电力成本。通过使用折射率分布类似于自聚焦光纤的渐变折射率平面波导,可以控制光线的路径。此外,聚光器可以整体制造,这减少了菲涅尔反射。总体而言,与使用均匀波导制成的相同系统相比,光学效率可提高多达33%。此外,可以保留通过模塑经济高效地制造聚光器的能力,从而有可能降低太阳能发电的成本。