DocumentCode
426821
Title
A deep-space concentrator for inner and outer solar system missions
Author
Stern, T.G. ; Piszczor, M.
Author_Institution
Composite Opt. Inc., San Diego, CA, USA
fYear
2004
fDate
29-31 July 2004
Firstpage
327
Lastpage
330
Abstract
Planetary missions pose special challenges to solar panels because of the wide range of illumination intensities and temperatures. Some missions have both near-sun and far-sun operation requirements, which impart both high illumination, high temperature and low illumination, low temperature operating regimes on the solar panel. At first, a solar concentrator may seem to be a counter-intuitive choice for surviving near-sun environments, however, we describe here an approach to using a high concentration ratio design to improve the ability to operate in both near-sun and far-sun conditions. A modular off-axis reflective concentrator was chosen as the basis for the deep space concentrator (DSC) design. Optical and thermal analysis was performed to show the ability of the design to withstand near and far-sun environments. A test model was built using graphite fiber reinforced composite (GFRC) mirrors and a GaAs solar cell receiver to demonstrate the ability to obtain tight pointing tolerance in a lightweight, thermally stable design.
Keywords
carbon fibre reinforced composites; gallium arsenide; mirrors; solar cells; solar energy concentrators; space vehicle power plants; thermal analysis; GaAs solar cell receiver; deep-space concentrator; graphite fiber reinforced composite mirrors; off-axis reflective concentrator; optical analysis; planetary missions; solar concentrator; solar panel; solar system missions; thermal analysis; Gallium arsenide; Lighting; Mirrors; Optical design; Optical fiber testing; Optical receivers; Performance analysis; Photovoltaic cells; Solar system; Temperature distribution;
fLanguage
English
Publisher
ieee
Conference_Titel
Energy Conversion Engineering Conference, 2002. IECEC '02. 2002 37th Intersociety
Print_ISBN
0-7803-7296-4
Type
conf
DOI
10.1109/IECEC.2002.1392035
Filename
1392035
Link To Document