DocumentCode :
3515960
Title :
“Gondola”: Trackless LCPV module for Si cells with low-aspect ratio and high energy rating
Author :
Morichetti, Francesco ; Righetti, Aldo ; Grasso, Giorgio ; Ubaldi, Maria C. ; Pietralunga, Silvia M.
Author_Institution :
Politec. di Milano, Dip. Elettron. e Inf., Milan, Italy
fYear :
2012
fDate :
3-8 June 2012
Abstract :
We introduce and discuss the design of low-concentrating optics for trackless PV modules, to be coupled to high-performance silicon cells, to leverage their economical competitiveness. Aiming at high compatibility with standard installation infrastructures and high energy rating, the leading design rules are the minimization of the aspect ratio of the concentrator and the maximization of the optical collection efficiency for sunlight, whilst accounting for the daily and yearly evolution in the relative orientation of the PV module and the sun. A ray-tracing numerical simulator was used for the design. The result is a prismatic 2D concentrator unit, which features a geometrical gain G= 2 and more than 82% in yearly averaged effective optical performance ratio, if supposed operated in Southern Europe environment, comprising the contribution given by diffused light. The optimized aspect ratio of concentrating optics measures ~ 0.27. The prismatic shape of the concentrator can be slightly tuned, to address different orientation in the installation, without impairing the optical performance. The maximization of the effective optical performance ratio contributes to lower the Levelized Cost of Electricity for this solution, what supports the market sustainability of the present approach to trackless LCPV.
Keywords :
elemental semiconductors; minimisation; numerical analysis; optical design techniques; power markets; ray tracing; silicon; solar cells; solar energy concentrators; sunlight; Gondola; Si; Southern Europe environment; aspect ratio minimization; design rules; economical competitiveness; geometrical gain; high energy rating; high-performance silicon cells; levelized cost of electricity reduction; low-aspect ratio; low-concentrating optics design; low-concentration CPV; market sustainability; optical collection efficiency maximization; optical performance ratio; prismatic 2D concentrator unit; ray-tracing numerical simulator; standard installation infrastructures; sunlight; trackless LCPV module; Holographic optical components; Holography; Optical design; Optical reflection; Photovoltaic cells; Standards; concentrating photovoltaics; photovoltaic cells; solar energy;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Photovoltaic Specialists Conference (PVSC), 2012 38th IEEE
Conference_Location :
Austin, TX
ISSN :
0160-8371
Print_ISBN :
978-1-4673-0064-3
Type :
conf
DOI :
10.1109/PVSC.2012.6317761
Filename :
6317761
Link To Document :
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