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Power system analysis and optimization of a modular experiment Carrier during an analog lunar demo mission on a volcanic environment

机译:在火山环境模拟月球演示中的模块化实验载波的电力系统分析与优化

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摘要

The ROBEX (Robotic Exploration of Extreme Environments) alliance, as formed by the German Helmholtz association, aims to explore synergies and bring together technological challenges and scientific questions between two, up to now unrelated, fields: space and deep sea. The final goal of the alliance targets field tests for available and newly developed instrumentation for the deep sea and on a terrestrial lunar analogue. In this regard, two different test campaigns were conducted, one in the area of Svalbard, Norway and one on mount Etna in Sicily, Italy. The volcano environment served as a lunar analogue, enabling seismic scientific experiments and testing of robotic mobility algorithms. The complete field mission infrastructure consists of a stationary lander, a mobile element and instrument carriers. The modular instrument carrier, commonly referred as Remote Unit (RU), was developed accounting for two different mass requirements: 3 kg (RU3) and 10 kg (RU10). While developed in the frame of ROBEX resumes the idea of a lightweight instrument carrier as developed for the MASCOT (Mobile Asteroid surface scout) mission. The RU houses the instrument, shelters it and provides all essential support functions such as rudimentary thermal control (via foil covering), power provision, data acquisition and handling and data transmission to the control centre. This paper presents theoretical and experimental results of the RU3 power subsystem analysis during the mount Etna field campaign. Drawing upon this analysis, necessary adjustments and revisions to further develop the system towards a more power efficient structure for terrestrial and extraterrestrial usage can be concluded.
机译:由德国亥姆霍兹协会组成的Robex(极端环境的机器人探索)联盟旨在探索协同效应,并在两个之间的技术挑战和科学问题上,达到目前无关,田野:空间和深海。联盟的最终目标是针对可用和新开发的深海和陆地月球模拟的现场测试。在这方面,在意大利西西里岛的斯瓦尔巴德,挪威和一个在斯科尔巴德和一个在西西里岛的一个不同的测试活动。火山环境担任月球模拟,使地震科学实验和机器人移动性算法的测试。完整的现场使命基础设施包括静止着陆器,移动元件和仪器载体。模块化仪器载体通常被称为远程单元(RU),开发了两种不同的质量要求:3千克(RU3)和10千克(RU10)。在Robex框架中开发的虽然为吉祥物(移动小行星表面侦察员)任务开发的轻量级仪器载体的想法。 RU容纳仪器,避难所避免并提供所有基本的支持功能,如基本的热控制(通过箔覆盖),电力供电,数据采集和处理和数据传输到控制中心。本文介绍了埃德纳山田野运动期间RU3电源子系统分析的理论和实验结果。在这种分析上,可以得出必要的调整和修订,以进一步开发系统朝着陆地和外星使用的更有效的结构。

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