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Multijunction Solar Cell Technology for Mars Surface Applications

机译:火星表面应用的多结太阳能电池技术

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Solar cells used for Mars surface applications have been commercial space qualified AMO optimized devices. Due to the Martian atmosphere, these cells are not optimized for the Mars surface and as a result operate at a reduced efficiency. A multi-year program, MOST (Mars Optimized Solar Cell Technology), managed by JPL Science Mission Directorate (SMD) and funded by NASA Code S, was initiated in 2004, to develop tools to modify commercial AMO cells for the Mars surface solar spectrum and to fabricate Mars optimized devices for verification. This effort required defining the surface incident spectrum, developing an appropriate laboratory solar simulator measurement capability, and to develop and test commercial cells modified for the Mars surface spectrum. This paper discusses the program, including results for the initial modified cells. Simulated Mars surface measurements of MER cells and Phoenix Lander cells (2007 launch) are provided to characterize the performance loss for those missions. In addition, the performance of the MER rover solar arrays is updated to reflect their more than two (2) year operation
机译:用于火星表面应用的太阳能电池已经是商业空间合格的AMO优化器件。由于火星的气氛,这些细胞没有针对火星表面进行优化,结果以降低的效率操作。由JPL科学任务总局(SMD)管理的多年计划,大多数(MARS优化的太阳能电池技术)于2004年启动,为开发工具修改火星表面太阳能光谱的商业amo细胞并制造MARS优化的设备进行验证。这种努力需要定义表面事故频谱,开发适当的实验室太阳模拟器测量能力,并开发和测试为MARS表面光谱修改的商业细胞。本文讨论了该计划,包括初始修改细胞的结果。提供了MEL细胞和凤凰兰德电池(2007年发布)的模拟火星表面测量,以表征这些任务的性能损失。此外,更新了MEL ROVE太阳能阵列的性能,以反映其两年(2)年的运营

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