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ADAPTING AN OPEN-ARCHITECURE MISSION OPERATIONS SYSTEM FOR A LUNAR ROVER MISSION

机译:为月球漫游车任务采用开放式架构的任务操作系统

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The Hawaii Space Flight Laboratory (HSFL) at the University of Hawaii at Manoa under a NASA grant isdeveloping a comprehensive open-architecture space mission operations system (COSMOS) designed particularly toprovide operations support for multiple small spacecraft. HSFL was recently on a Canadian-led team to perform aconceptual study for the Canadian Space Agency on the feasibility of doing a micro-rover (30 kg) mission to theMoon for no more than $100 million (Canadian). This mission was called the Canadian American British LunarExplorer (CABLE) mission. As part of the CABLE mission plan, the Inter-Stage Adapter that is used to providesupport for the lander during launch and also propellant for following propulsive burns, after separation becomes acis-lunar spacecraft called ISAS to provide measurements of the environment in cis-lunar space. This paperexamines the adaption of the COSMOS system to provide operations support for the CABLE mission. It wasdetermined during the study that not only is COSMOS suitable for supporting operations for the lander spacecraftand ISAS, it could also provide operations support for the lunar rover. For monitor and control of the two spacecraftand rover we are using the Mission Operations Support Tool (MOST) of COSMOS, This tool, which is based on theLUNOPS tool developed for the Clementine lunar mission in 1994, also provides monitoring of the missiontrajectories, including the descent and landing on the Moon. Working prototypes of MOST to demonstrate thesecapabilities were completed for the CSA study. To further demonstrate the suitability of COSMOS and MOST tosupport lunar operations, MOST was used in a student project at the University of Hawaii at Manoa to provideoperations for a simulated Mars lander and rover mission. It is planned to use a version of the CABLE MOSTsoftware to assist the second field deployment of the CSA Mars Methane Mission (MMM) in a terrestrial analogueenvironment. This will employ the Kapvik micro-rover to conduct field-investigations simulating a remote Marsmission in serpentinite geology relevant to Mars to verify the methodologies and instrumentation for the in-situsearch for methane sources and relevant microbial bio signatures related to methanogens.
机译:根据美国国家航空航天局(NASA)资助,位于夏威夷马诺阿的夏威夷大学的夏威夷太空飞行实验室(HSFL)为 开发专门为以下目的而设计的全面的开放式结构太空任务作战系统(COSMOS): 为多个小型航天器提供运行支持。 HSFL最近在加拿大领导的团队中进行表演 对加拿大航天局进行微型漫游车(30公斤)飞行任务可行性的概念研究 Moon的身价不超过1亿加元(加拿大)。这个任务被称为加拿大裔美国人英国登月 资源管理器(CABLE)任务。作为CABLE任务计划的一部分,跨阶段适配器用于提供 发射期间为着陆器提供支持,并在分离后成为推进剂,以进行后续的灼伤 称为ISAS的顺月航天器,用于测量顺月空间中的环境。这篇报告 检查COSMOS系统的适应性,以为CABLE任务提供作战支持。它是 在研究过程中确定,COSMOS不仅适合于支持着陆器航天器的操作 和ISAS,它还可以为月球车提供运营支持。用于监视和控制两个航天器 和漫游车,我们使用的是COSMOS的任务运营支持工具(MOST),该工具基于 1994年为克莱门汀登月飞行任务开发的LUNOPS工具还提供对飞行任务的监视 轨迹,包括下降和降落在月球上。 MOST的工作原型来演示这些 CSA研究的功能已完成。为了进一步证明COSMOS和MOST的适用性, 为了支持登月作战,MOST用于马诺阿夏威夷大学的一个学生项目中,以提供 模拟火星着陆器和火星探测器的任务。计划使用COST MOST的版本 软件,以地面模拟形式协助CSA火星甲烷任务(MMM)的第二次野外部署 环境。这将使用Kapvik微型漫游车进行现场调查,以模拟远程火星 与火星有关的蛇纹岩地质任务,以验证现场方法和仪器 搜索甲烷源和与产甲烷菌有关的相关微生物生物特征。

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