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首页> 外文期刊>Progress in Aerospace Sciences >CubeSat evolution: Analyzing CubeSat capabilities for conducting science missions
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CubeSat evolution: Analyzing CubeSat capabilities for conducting science missions

机译:CubeSat演变:分析执行科学任务的CubeSat功能

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Traditionally, the space industry produced large and sophisticated spacecraft handcrafted by large teams of engineers and budgets within the reach of only a few large government-backed institutions. However, over the last decade, the space industry experienced an increased interest towards smaller missions and recent advances in commercial-off-the-shelf (COTS) technology miniaturization spurred the development of small spacecraft missions based on the CubeSat standard. CubeSats were initially envisioned primarily as educational tools or low cost technology demonstration platforms that could be developed and launched within one or two years. Recently, however, more advanced CubeSat missions have been developed and proposed, indicating that CubeSats clearly started to transition from being solely educational and technology demonstration platforms to offer opportunities for low-cost real science missions with potential high value in terms of science return and commercial revenue. Despite the significant progress made in CubeSat research and development over the last decade, some fundamental questions still habitually arise about the CubeSat capabilities, limitations, and ultimately about their scientific and commercial value. The main objective of this review is to evaluate the state of the art CubeSat capabilities with a special focus on advanced scientific missions and a goal of assessing the potential of CubeSat platforms as capable spacecraft. A total of over 1200 launched and proposed missions have been analyzed from various sources including peer-reviewed journal publications, conference proceedings, mission webpages as well as other publicly available satellite databases and about 130 relatively high performance missions were downselected and categorized into six groups based on the primary mission objectives including "Earth Science and Spaceborne Applications", "Deep Space Exploration", "Heliophysics: Space Weather", "Astrophysics", "Spaceborne In Situ Laboratory", and "Technology Demonstration" for in detail analysis. Additionally, the evolution of CubeSat enabling technologies are surveyed for evaluating the current technology state of the art as well as identifying potential areas that will benefit the most from further technology developments for enabling high performance science missions based on CubeSat platforms.
机译:传统上,航天工业生产大型复杂的航天器,这些航天器是由大型工程师和预算小组手工制造的,只有少数大型政府支持的机构才能达到。但是,在过去的十年中,航天工业对小型任务的兴趣日益浓厚,而现成商用(COTS)技术小型化的最新进展刺激了基于CubeSat标准的小型航天器任务的发展。最初将CubeSats设想为可在一两年内开发和发布的教育工具或低成本技术演示平台。但是,最近,已经开发并提出了更高级的CubeSat任务,这表明CubeSats显然已经从单纯的教育和技术演示平台开始转变,为低成本的,具有科学回报和商业价值的,具有潜在高价值的实际科学任务提供了机会。收入。尽管在过去十年中CubeSat的研究和开发取得了重大进展,但仍然习惯性地出现一些有关CubeSat的功能,局限性以及最终的科学和商业价值的基本问题。此次审查的主要目的是评估CubeSat的技术水平,特别侧重于先进的科学任务,并评估CubeSat平台作为有能力的航天器的潜力。从各种来源对总共1200多个发射和提议的任务进行了分析,包括同行评审的期刊出版物,会议论文集,任务网页以及其他可公开获得的卫星数据库,并且从大约120个相对高性能的任务中选择了以下六个类别详细分析的主要任务目标包括“地球科学和太空应用”,“深空探索”,“日光物理学:太空天气”,“天体物理学”,“星载原位实验室”和“技术演示”。此外,对CubeSat支持技术的发展进行了调查,以评估当前的技术发展水平,并确定从进一步的技术开发中受益最大的潜在领域,以基于CubeSat平台实现高性能科学任务。

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