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Adaptation of thin-film photovoltaic technology for use in space

机译:薄膜光伏技术在空间中的适应

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The anticipated deployment of large numbers of satellites in low Earth orbit (LEO) for global telecommunications networks renews interest in producing solar power systems that are lightweight, robust, resistant to radiation damage and relatively inexpensive. Promising near term thin-film candidates are amorphous silicon (a-Si), cadmium telluride (CdTe), and copper indium gallium diselenide (CIGS). The authors discuss the modifications that are necessary to adapt terrestrial thin-film technology for use in space. They characterize expected module performance and present results of tests performed on sample cells. They consider the possibility of achieving aggressive cost, weight and performance targets through the use of thin-film photovoltaic (PV) technology
机译:预期部署大量卫星在低地球轨道(LEO)中为全球电信网络更新对生产轻量级,坚固,抗辐射损坏和相对便宜的太阳能电力系统的兴趣。 临近术语薄膜候选者的有前途是无定形硅(A-Si),碲化镉(CdTe)和铜铟镓酶(CIGS)。 作者讨论了适应陆地薄膜技术在空间中使用的修改。 它们表征了预期的模块性能和对样品细胞进行的测试结果。 他们考虑通过使用薄膜光伏(PV)技术来实现攻击性成本,重量和性能目标的可能性

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