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- W2013005191 abstract "Abstract The use of concentrator-geometry-solar cell panels provides effective geometrical shielding against charged-particle radiation in space, there- by increasing the useful life expectancy of these panels. A “V-ridge” or “trough” concentrator of a specified geometry, material, and thickness is studied. Variations in radiation damage rates and panel life are discussed with respect to cover-slip mass for circular equatorial orbits. Panel geometry, allowable cell output degradation, orbit inclination, cell type, and base resistivity variations are also discussed briefly. Three specific circular equatorial orbit cases are considered: 1. 1—200 nautical miles, corresponding to a low orbit, which is below most of the Van Allen belt radiation; 2. 2—2000 nautical miles, corresponding to an intermediate orbit which is in the highest flux region of the trapped radiation; and 3. 3—19,300 nautical miles, corresponding to a synchronous orbit essentially outside the Van Allen radiation belt but subject to solar-flare proton and cosmic fluxes. This work shows that the effective life of a solar-cell panel in an omnidirectional particle flux can be extended by as much as a factor of two by the use of concentrator geometry." @default.
- W2013005191 created "2016-06-24" @default.
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- W2013005191 date "1966-04-01" @default.
- W2013005191 modified "2023-09-27" @default.
- W2013005191 title "Enhanced radiation resistance of concentrator solar cell panels" @default.
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- W2013005191 doi "https://doi.org/10.1016/0038-092x(66)90042-9" @default.
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