Toward the Use of Electronic Commercial Off-the-Shelf Devices in Space: Assessment of the True Radiation Environment in Low Earth Orbit (LEO)

IF 2.6 3区 工程技术 Q2 COMPUTER SCIENCE, INFORMATION SYSTEMS Electronics Pub Date : 2023-09-27 DOI:10.3390/electronics12194058
Oscar Gutiérrez, Manuel Prieto, Alvaro Perales-Eceiza, Ali Ravanbakhsh, Mario Basile, David Guzmán
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Abstract

Low Earth orbit missions have become crucial for a variety of applications, from scientific research to commercial purposes. Exposure to ionizing radiation in Low Earth Orbit (LEO) poses a significant risk to both spacecraft and astronauts. In this article, we analyze radiation data obtained from different LEO missions to evaluate the potential of using electronic commercial off-the-shelf (COTS) devices in space missions. This study is focused on the total ionizing dose (TID). Our results demonstrate that COTS technology can effectively provide cost-effective and reliable solutions for space applications. Furthermore, we compare the data obtained from actual missions with computational models and tools, such as SPENVIS, to evaluate the accuracy of these models and enhance radiation exposure prediction. This comparison provides valuable insights into the true radiation environment in space and helps us to better understand the potential of COTS technology in reducing costs and development times by utilizing technology previously used in other areas. In light of the results, we can see that the radiation values observed experimentally in space missions versus the computer simulations used present variations up to a factor of 30 depending on the model used in the analysis.
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电子商用现货设备在太空中的应用:低地球轨道真实辐射环境的评估
从科学研究到商业目的,低地球轨道任务已经成为各种应用的关键。近地轨道(LEO)电离辐射暴露对航天器和宇航员都构成重大风险。在本文中,我们分析了从不同的LEO任务中获得的辐射数据,以评估在太空任务中使用电子商业现货(COTS)设备的潜力。本研究的重点是总电离剂量(TID)。研究结果表明,COTS技术可以有效地为空间应用提供经济可靠的解决方案。此外,我们将实际任务获得的数据与计算模型和工具(如SPENVIS)进行比较,以评估这些模型的准确性,并加强辐射暴露预测。这种比较提供了对太空真实辐射环境的有价值的见解,并帮助我们更好地了解COTS技术的潜力,通过利用以前在其他领域使用的技术来降低成本和开发时间。根据这些结果,我们可以看到,根据分析中使用的模型,在空间任务中实验观测到的辐射值与使用的计算机模拟值之间的差异可达30倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Electronics
Electronics Computer Science-Computer Networks and Communications
CiteScore
1.10
自引率
10.30%
发文量
3515
审稿时长
16.71 days
期刊介绍: Electronics (ISSN 2079-9292; CODEN: ELECGJ) is an international, open access journal on the science of electronics and its applications published quarterly online by MDPI.
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