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2013年火星模拟任务

The MARS2013 Mars analog mission.

作者信息

Groemer Gernot, Soucek Alexander, Frischauf Norbert, Stumptner Willibald, Ragonig Christoph, Sams Sebastian, Bartenstein Thomas, Häuplik-Meusburger Sandra, Petrova Polina, Evetts Simon, Sivenesan Chan, Bothe Claudia, Boyd Andrea, Dinkelaker Aline, Dissertori Markus, Fasching David, Fischer Monika, Föger Daniel, Foresta Luca, Fritsch Lukas, Fuchs Harald, Gautsch Christoph, Gerard Stephan, Goetzloff Linda, Gołebiowska Izabella, Gorur Paavan, Groemer Gerhard, Groll Petra, Haider Christian, Haider Olivia, Hauth Eva, Hauth Stefan, Hettrich Sebastian, Jais Wolfgang, Jones Natalie, Taj-Eddine Kamal, Karl Alexander, Kauerhoff Tilo, Khan Muhammad Shadab, Kjeldsen Andreas, Klauck Jan, Losiak Anna, Luger Markus, Luger Thomas, Luger Ulrich, McArthur Jane, Moser Linda, Neuner Julia, Orgel Csilla, Ori Gian Gabriele, Paternesi Roberta, Peschier Jarno, Pfeil Isabella, Prock Silvia, Radinger Josef, Ramirez Barbara, Ramo Wissam, Rampey Mike, Sams Arnold, Sams Elisabeth, Sandu Oana, Sans Alejandra, Sansone Petra, Scheer Daniela, Schildhammer Daniel, Scornet Quentin, Sejkora Nina, Stadler Andrea, Stummer Florian, Taraba Michael, Tlustos Reinhard, Toferer Ernst, Turetschek Thomas, Winter Egon, Zanella-Kux Katja

机构信息

1 Austrian Space Forum , Innsbruck and Vienna, Austria .

出版信息

Astrobiology. 2014 May;14(5):360-76. doi: 10.1089/ast.2013.1062.

Abstract

We report on the MARS2013 mission, a 4-week Mars analog field test in the northern Sahara. Nineteen experiments were conducted by a field crew in Morocco under simulated martian surface exploration conditions, supervised by a Mission Support Center in Innsbruck, Austria. A Remote Science Support team analyzed field data in near real time, providing planning input for the management of a complex system of field assets; two advanced space suit simulators, four robotic vehicles, an emergency shelter, and a stationary sensor platform in a realistic work flow were coordinated by a Flight Control Team. A dedicated flight planning group, external control centers for rover tele-operations, and a biomedical monitoring team supported the field operations. A 10 min satellite communication delay and other limitations pertinent to human planetary surface activities were introduced. The fields of research for the experiments were geology, human factors, astrobiology, robotics, tele-science, exploration, and operations research. This paper provides an overview of the geological context and environmental conditions of the test site and the mission architecture, in particular the communication infrastructure emulating the signal travel time between Earth and Mars. We report on the operational work flows and the experiments conducted, including a deployable shelter prototype for multiple-day extravehicular activities and contingency situations.

摘要

我们报告了“火星2013”任务,这是在撒哈拉沙漠北部进行的为期4周的火星模拟实地测试。由摩洛哥的一支实地考察队在模拟火星表面探索条件下进行了19项实验,由奥地利因斯布鲁克的任务支持中心监督。一个远程科学支持团队近乎实时地分析实地数据,为管理实地资产的复杂系统提供规划输入;飞行控制团队协调了两个先进的太空服模拟器、四辆机器人车辆、一个应急避难所和一个处于实际工作流程中的固定传感器平台。一个专门的飞行计划小组、用于漫游车远程操作的外部控制中心以及一个生物医学监测团队支持实地作业。引入了10分钟的卫星通信延迟以及与人类行星表面活动相关的其他限制。实验的研究领域包括地质学、人因学、天体生物学、机器人技术、远程科学、探索和运筹学。本文概述了测试地点的地质背景和环境条件以及任务架构,特别是模拟地球与火星之间信号传播时间的通信基础设施。我们报告了操作工作流程和进行的实验,包括用于多日舱外活动和应急情况的可部署避难所原型。

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