Full modeling and experimental validation of cylindrical holographic lenses recorded in Bayfol HX photopolymer and partly operating in the transition regime for solar concentration

被引:14
|
作者
Marin-Saez, Julia [1 ]
Atencia, Jesus [2 ]
Chemisana, Daniel [1 ]
Collados, Maria-Victoria [2 ]
机构
[1] Univ Lleida, Polytech Sch, Appl Phys Sect Environm Sci Dept, Jaume II 69, Lleida 25001, Spain
[2] Univ Zaragoza, Fac Sci, Aragon Inst Engn Res I3A, Appl Phys Dept, Pedro Cerbuna 12, E-50009 Zaragoza, Spain
来源
OPTICS EXPRESS | 2018年 / 26卷 / 10期
关键词
OPTICAL-ELEMENTS; DIFFRACTION; SYSTEM; GRATINGS; OPTIMIZATION; PERFORMANCE; COLLECTION; EFFICIENCY; CRITERIA;
D O I
10.1364/OE.26.00A398
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Concentrating photovoltaics for building integration can be successfully carried out with Holographic Optical Elements (HOEs) because of their behavior analogous to refractive optical elements and their tuning ability to the spectral range that the photovoltaic (PV) cell is sensitive to. That way, concentration of spectral ranges that would cause overheating of the cell is avoided. Volume HOEs are usually chosen because they provide high efficiencies. However, their chromatic selectivity is also very high, and only a small part of the desired spectral range reaches the PV cell. A novel approach is theoretically and experimentally explored to overcome this problem: the use of HOEs operating in the transition regime, which yield lower chromatic selectivity while keeping rather high efficiencies. A model that considers the recording material's response, by determining the index modulation reached for each spatial frequency and exposure dosage, has been developed. It has been validated with experimental measurements of three cylindrical holographic lenses with different spatial frequency ranges recorded in Bayfol HX photopolymer. Simulations of systems comprising two lenses and a mono-c Si PV cell are carried out with the standard AM 1.5D solar spectrum. Promising results are obtained when using the system with lower spatial frequencies lenses: a total current intensity equal to 3.72 times the one that would be reached without the concentrator. (C) 2018 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
引用
收藏
页码:A398 / A412
页数:15
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    Marin-Saez, Julia
    Atencia, Jesus
    Chemisana, Daniel
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    OPTICS EXPRESS, 2016, 24 (06): : A720 - A730