论文标题
NASA/GSFC的飞行软件核心飞行系统实现了月球表面成像任务
NASA/GSFC's Flight Software Core Flight System Implementation For A Lunar Surface Imaging Mission
论文作者
论文摘要
随着新的临界点技术提供了这样做的可能性,回到月球进行研究和探索的兴趣增加了。这些举措之一是NASA的Artemis计划,该计划计划在2024年将人类归还到月球表面并研究表面上的水沉积物。该计划还将作为计划派遣人类探索火星的物流的实践。为了安全地将人类归还月球,需要多种技术进步和关于月球表面性质的多样化的知识。本文将讨论EAGLECAM的飞行软件的设计和实施,这是一种基于NASA的Goddard Space Flight Center开发的免费开源核心飞行系统(CFS)体系结构。 Eaglecam是由Intuitive Machines开发的商业月球有效载荷服务Nova-C Lander运送到月球的有效载荷。摄像机系统将捕获执行月球着陆的航天器的第一个第三人称视图,并收集其他科学数据,例如与表面相互作用。完整的系统由将其弹出的Cubesat和Deployer组成。这将是第一次在月球上使用WiFi协议来建立本地通信网络。
The interest in returning to the Moon for research and exploration has increased as new tipping point technologies are providing the possibility to do so. One of these initiatives is the Artemis program by NASA, which plans to return humans by 2024 to the lunar surface and study water deposits on the surface. This program will also serve as a practice run to plan the logistics of sending humans to explore Mars. To return humans safely to the Moon, multiple technological advances and diverse knowledge about the nature of the lunar surface are needed. This paper will discuss the design and implementation of the flight software of EagleCam, a CubeSat camera system based on the free open-source core Flight System (cFS) architecture developed by NASA's Goddard Space Flight Center. EagleCam is a payload transported to the Moon by the Commercial Lunar Payload Services Nova-C lander developed by Intuitive Machines. The camera system will capture the first third-person view of a spacecraft performing a Moon landing and collect other scientific data such as plume interaction with the surface. The complete system is composed of the CubeSat and the deployer that will eject it. This will be the first time WiFi protocol is used on the Moon to establish a local communication network.