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First Results from the ROBEX Demonstration Mission on Mt. Etna: A modular system architecture to perform seismic experiments on a volcano as terrestrial validation of a lunar mission scenario

机译:MT.Tevex演示特派团的首先结果埃特纳:模块化系统架构,用于对火山进行地震实验作为月球使命场景的陆地验证

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In the past 4 years, the ROBEX (Robotic exploration under extreme environments) alliance members have developed technologies to be used as key infrastructural elements supporting a lunar robotic surface exploration scenario consisting of modular landing systems, mobile elements and deployable instrument carriers equipped with seismic sensors. The systems have been developed along a lunar exploration scenario, called Active Seismic Network, supposed to investigate amongst others the subsurface layering on the moon. As flight opportunities and funding for real lunar missions are limited, analogue field testing is one of the few possibilities to validate such a coherent science and mission scenario and all its required technologies including their interactions. Terrestrial analog testing is a widespread methodology in planetary science and exploration technology development serving several purposes ranging from knowledge increase regarding planetary processes, testing of methodologies and strategies including training of personnel and offering also the possibility of engaging the public by performing outreach activities. A thorough investigation of terrestrial analogue sites has revealed Mount Etna at Sicily Italy, in a region which is characterized by active volcanism, to comply best with the technical and programmatic requirements and constraints for the terrestrial analogue field test in the ROBEX frame. The chosen region is characterized by a constant micro seismicity induced by volcanic activity and deep earthquakes that are localized in a similar depth range as expected in a lunar environment. This provides an excellent matching of the overall scientific and technological testing environment with the lunar one. Based on the realistic lunar exploration scenario, a mission scenario has been derived for the field test, which is designed to not only demonstrate technology, but to also generate meaningful scientific data and validate measurement methodologies for futu
机译:在过去的4年里,ROBEX(在极端环境下机器人探索)联盟成员开发的技术被用来作为支持,包括模块化的着陆系统,移动元素,并配有地震传感器部署工具运营商的月球机器人表面的勘探方案的关键基础设施元素。该系统已经沿着月球探测发展情况,称为主动地震台网,应该调查除其他地下分层在月球上。至于真正的月球任务飞行机会和资金是有限的,模拟场测试的几种可能性,以验证这种协调一致的科学和任务场景及其所有必需的技术,包括它们之间的相互作用之一。地面模拟试验是在行星科学和探索技术发展服务几个目的关于行星的过程,方法和策略,包括人员的培训,也提供通过执行宣传活动,鼓励公众参与的可能性的测试,从知识增加了广泛的方法。地面模拟网站的深入调查显示埃特纳火山西西里意大利,在它的特点是火山活动活跃的区域,以符合最佳的技术和方案的要求和约束在ROBEX帧的地面模拟现场试验。所选择的区域的特征在于由火山活动和深地震引起的恒定微地震被以类似的深度范围局部按预期在月球环境。这提供了全面的科学与技术试验环境,月球的一个极好的匹配。基于现实的月球探测方案,任务场景已经导出了现场测试,其目的是不仅展示技术,而且还产生有意义的科学数据和验证的测量方法为浮图

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