Improving performances of Fresnel CPV systems: Fresnel-RXI Köhler concentrator
Marina Buljan, Juan C. Miñano, Pablo Benı́tez, Rubén Mohedano, Julio Chaves
Abstract
Marina Buljan, Juan C. Miñano, Pablo Benı́tez, Rubén Mohedano, Julio Chaves
Abstract
The optical design presented here has been done in order to achieve superior optical performance in comparison with the state-of-the-art Fresnel CPV systems. The design consists of a Photovoltaic Concentrator (CPV) comprising a Fresnel lens (F) as a Primary Optical Element (POE) and a dielectric solid RXI as a Secondary Optical Element (SOE), both with free-form surfaces (i.e. neither rotational nor linearly symmetric). It is the first time the RXI-type geometry has been applied to a CPV secondary. This concentrator has ultra-high CAP value ready to accommodate more efficient cells eventually to be developed and used commercially in future.
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The optical design presented here has been done in order to achieve superior optical performance in comparison with the state-of-the-art Fresnel CPV systems. The design consists of a Photovoltaic Concentrator (CPV) comprising a Fresnel lens (F) as a Primary Optical Element (POE) and a dielectric solid RXI as a Secondary Optical Element (SOE), both with free-form surfaces (i.e. neither rotational nor linearly symmetric). It is the first time the RXI-type geometry has been applied to a CPV secondary. This concentrator has ultra-high CAP value ready to accommodate more efficient cells eventually to be developed and used commercially in future.
Key concepts: Concentrator, Fresnel lens, Optics, Fresnel equations, Fresnel zone, Nonimaging optics, Materials science, Fresnel zone antenna