DocumentCode :
3340758
Title :
216 cell microconcentrator module with moderate concentration, ±4° acceptance angle, and 13.3 mm focal length
Author :
Nielson, Gregory N. ; Okandan, Murat ; Cruz-Campa, Jose Luis ; Lentine, Anthony L. ; Sweatt, William C. ; Jared, Bradley H. ; Resnick, P.J. ; Bongsang Kim ; Anderson, Brian J. ; Gupta, V.P. ; Tauke-Pedretti, Anna ; Cederberg, Jeffrey G. ; Tian Gu ; Haney,
Author_Institution :
Sandia Nat. Labs., Albuquerque, NM, USA
fYear :
2013
fDate :
16-21 June 2013
Abstract :
We report on a demonstration prototype module created to explore the viability of using microscale solar cells combined with microlens array concentrators to create a thin, flat-plate concentrator module with a relatively large acceptance angle for use with coarse two-axis tracking systems designed for flat-plate, one-sun modules. The demonstration module was comprised of an array of 216 cell/microlens units and was manufactured using standard tools common to the integrated circuit, microelectromechanical system (MEMS), and electronics assembly industries. The module demonstrated an acceptance angle of ±4°, an optical concentration level of 36X, and a focal depth of 13.3 mm. The acceptance angle and focal depth of the system successfully demonstrated adequate performance for integration into a system using a coarse two-axis tracker for flat-plate modules. To fully take advantage of this system approach, significant future work is required to reduce optical losses, increase cell and module efficiency, reduce the focal length to approximately 5 mm, and increase the concentration level to greater than 100X while maintaining an acceptance angle of at least ±2°.
Keywords :
microlenses; optical tracking; solar cell arrays; solar energy concentrators; MEMS; acceptance angle; coarse two-axis tracking systems; demonstration prototype module; electronic assembly industries; flat-plate one-sun modules; focal depth; focal length; integrated circuit; microelectromechanical system; microlens array concentrators; microlens units; microscale solar cells; optical concentration level; optical losses; size 13.3 mm; solar cell microconcentrator module; system approach; thin flat-plate concentrator module; Arrays; Lenses; Microoptics; Microprocessors; Optical design; Prototypes; photovoltaic cells; silicon solar system; solar energy;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Photovoltaic Specialists Conference (PVSC), 2013 IEEE 39th
Conference_Location :
Tampa, FL
Type :
conf
DOI :
10.1109/PVSC.2013.6744191
Filename :
6744191
Link To Document :
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