Optimal design of high-efficiency single-junction and tandem concentrator space cells at 80 deg C and 100 SUNS
J. C. C. Fan, B. J. Palm
Abstract
J. C. C. Fan, B. J. Palm
Abstract
Computer analysis was used to determine the AMO conversion efficiency of single-junction crystalline cells, two-cell and three-cell crystalline tandem structures operating under 100 suns and at 80 C. For optimally designed devices, the calculated efficiencies are 24% for single-junction cells, 33 to 35% for two-cell tandem structures, and 37 to 39% for three-cell tandem structures. Practical efficiencies are expected to be about 15 relative percentage points lower in each case.
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Computer analysis was used to determine the AMO conversion efficiency of single-junction crystalline cells, two-cell and three-cell crystalline tandem structures operating under 100 suns and at 80 C. For optimally designed devices, the calculated efficiencies are 24% for single-junction cells, 33 to 35% for two-cell tandem structures, and 37 to 39% for three-cell tandem structures. Practical efficiencies are expected to be about 15 relative percentage points lower in each case.
Key concepts: Suns in alchemy, Tandem, Concentrator, Materials science, Optoelectronics, Energy conversion efficiency, Optics, Physics