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Advanced Solar Cell and Array Technology for NASA Deep Space Missions

机译:用于NASA太空任务的先进太阳能电池和阵列技术

摘要

A recent study by the NASA Glenn Research Center assessed the feasibility of using photovoltaics (PV) to power spacecraft for outer planetary, deep space missions. While the majority of spacecraft have relied on photovoltaics for primary power, the drastic reduction in solar intensity as the spacecraft moves farther from the sun has either limited the power available (severely curtailing scientific operations) or necessitated the use of nuclear systems. A desire by NASA and the scientific community to explore various bodies in the outer solar system and conduct "long-term" operations using using smaller, "lower-cost" spacecraft has renewed interest in exploring the feasibility of using photovoltaics for to Jupiter, Saturn and beyond. With recent advances in solar cell performance and continuing development in lightweight, high power solar array technology, the study determined that photovoltaics is indeed a viable option for many of these missions.
机译:NASA Glenn研究中心最近的一项研究评估了使用光伏(PV)为航天器提供动力以进行外层行星,深空飞行任务的可行性。尽管大多数航天器都依赖于光伏发电作为主要动力,但随着航天器远离太阳移动,太阳强度的急剧降低要么限制了可用功率(严重限制了科学操作),要么使核系统得以使用。 NASA和科学界渴望探索外部太阳系中的各种物体并使用较小的,“成本较低”的航天器进行“长期”运行的愿望重新引起了人们的兴趣,探索将光伏技术用于土星木星的可行性超越。随着太阳能电池性能的最新进步以及轻巧,高功率的太阳能电池阵列技术的不断发展,该研究确定光伏电池确实是许多此类任务的可行选择。

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