首页> 外文期刊>Acta astronautica >CubeSat constellations for disaster management in remote areas
【24h】

CubeSat constellations for disaster management in remote areas

机译:CubeSat星座,用于偏远地区的灾难管理

获取原文
获取原文并翻译 | 示例
           

摘要

In recent years, CubeSats have considerably extended their range of possible applications, from a low cost means to train students and young researchers in space related activities up to possible complementary solutions to larger missions. Increasingly popular, whereas CubeSats are still not a solution for all types of missions, they offer the possibility of performing ambitious scientific experiments. Especially worth considering is the possibility of performing Distributed Space Missions, in which CubeSat systems can be used to increase observation sampling rates and resolutions, as well as to perform tasks that a single satellite is unable to handle. The cost of access to space for traditional Earth Observation CEO) missions is still quite high. Efficient architecture design would allow reducing mission costs by employing CubeSat systems, while maintaining a level of performance that, for some applications, could be close to that provided by larger platforms, and decreasing the time needed to design and deploy a fully functional constellation. For these reasons many countries, including developing nations, agencies and organizations are looking to CubeSat platforms to access space cheaply with, potentially, tens of remote sensing satellites. During disaster management, real-time, fast and continuous information broadcast is a fundamental requirement. In this sense, a constellation of small satellites can considerably decrease the revisit time (defined as the time elapsed between two consecutive observations of the same point on Earth by a satellite) over remote areas, by increasing the number of spacecraft properly distributed in orbit. This allows collecting as much data as possible for the use by Disaster Management Centers. This paper describes the characteristics of a constellation of CubeSats built to enable access over the most remote regions of Brazil, supporting an integrated system for mitigating environmental disasters in an attempt to prevent the catastrophic effects of natural events such as heavy rains that cause flooding. In particular, the paper defines the number of CubeSats and the orbital planes required to minimize the revisit time, depending on the application that is the mission objective. Each CubeSat is equipped with the suitable payloads and possesses the autonomy and pointing capabilities needed to meet the mission requirements. Thanks to the orbital features of the constellation, this service could be exploited by other tropical countries. Coverage of other areas of the Earth might be provided by adjusting the number and in-orbit distribution of the spacecraft.
机译:近年来,CubeSats已大大扩展了其可能的应用范围,从低成本的方法(在太空相关活动中对学生和年轻研究人员进行培训),到为大型任务提供可能的补充解决方案。尽管CubeSat仍不是所有类型任务的解决方案,但它们越来越受欢迎,但它们提供了进行雄心勃勃的科学实验的可能性。尤其值得考虑的是执行分布式太空任务的可能性,在这种任务中,可以使用CubeSat系统来提高观测采样率和分辨率,以及执行单个卫星无法处理的任务。传统的地球观测CEO任务进入太空的成本仍然很高。高效的体系结构设计将通过使用CubeSat系统降低任务成本,同时保持某些应用程序可能接近大型平台所提供的性能水平,并减少设计和部署全功能星座所需的时间。由于这些原因,包括发展中国家,机构和组织在内的许多国家/地区都在寻求CubeSat平台,以利用潜在的数十个遥感卫星廉价地访问太空。在灾难管理期间,实时,快速和连续的信息广播是基本要求。从这个意义上讲,通过增加适当分布在轨道上的航天器的数量,一个小卫星群可以大大减少偏远地区的重访时间(定义为卫星对地球上同一点的两次连续观测之间经过的时间)。这样可以收集尽可能多的数据,以供灾难管理中心使用。本文介绍了一个CubeSat星座的特点,该星座旨在支持巴西最偏远地区的访问,并为缓解环境灾难提供了一个综合系统,以防止自然事件(如引起洪水的大雨)的灾难性影响。特别是,本文根据作为任务目标的应用程序定义了使重访时间最小化所需的立方体卫星的数量和轨道平面。每个CubeSat都配备有合适的有效载荷,并具有满足任务要求所需的自主权和指向能力。由于星座的轨道特征,该服务可以被其他热带国家利用。可以通过调整航天器的数量和在轨分布来覆盖地球其他区域。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号