Optimal design of GaAs-based concentrator space solar cells for 100 AMO, 80 deg C operation
C. Goradia, M. Ghalla-Goradia, H. B. Curtis
Abstract
C. Goradia, M. Ghalla-Goradia, H. B. Curtis
Abstract
Using a detailed computer code and reasonable values of electrical and optical material parameters from current published literature, parameter optimization studies were performed on three configurations of GaAs-based concentrator solar cells for 100 AMO, 80 C operation. These studies show the possibility of designing GaAs-based solar cells with efficiencies exceeding 22% at 100 AMO 80 C and probable efficiency degradation of less than 15% after a 70% reduction in diffusion length in each cell region.
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Using a detailed computer code and reasonable values of electrical and optical material parameters from current published literature, parameter optimization studies were performed on three configurations of GaAs-based concentrator solar cells for 100 AMO, 80 C operation. These studies show the possibility of designing GaAs-based solar cells with efficiencies exceeding 22% at 100 AMO 80 C and probable efficiency degradation of less than 15% after a 70% reduction in diffusion length in each cell region.
Key concepts: Concentrator, Optoelectronics, Solar cell, Gallium arsenide, Materials science, Photovoltaic system, Computer science, Optics