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MMX - Development of a Rover Locomotion System for Phobos

机译:MMX-火卫一火星车移动系统的开发

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MMX (Martian Moons eXploration) is a robotic sample return mission of JAXA (Japan Aerospace Exploration Agency), CNES (Centre National d' Etudes Spatiales), and DLR (German Aerospace Center) with the launch planed for 2024. The mission aims to answer the question of the origin of Phobos and Deimos, which will also help to understand the material transport in the earliest period of our solar system, and of how was water brought to Earth. Besides JAXA's MMX mothership, which is responsible for sampling and sample return to Earth, a small rover which is built by CNES and DLR to land on Phobos for in-situ measurements, similar to MASCOT (Mobile Asteroid Surface Scout) on Ryugu. The MMX rover is a four-wheel driven autonomous system with a size of 41 cm × 37 cm × 30 cm and a weight of approximately 25 kg. Multiple science instruments and cameras are integrated in the rover body. The rover body has the form of a rectangular box. Attached at the sides are four legs with one wheel per leg. When the rover is detached from the mothership, the legs are folded together at the side of the rover body. When the rover has landed passively (no parachute or braking rockets) on Phobos, the legs are autonomously maneuvered to bring the rover in an upright orientation. One Phobos day lasts 7.65 earth hours, which yields about 300 extreme temperature cycles for the total mission time of three earth months. These cycles and the wide span of surface temperature between day and night are the main design drivers for the rover. This paper gives a detailed view on the development of the MMX rover locomotion subsystem.
机译:MMX(火星人的宇宙飞船)是JAXA(日本航空航天探索局),CNES(国家航天中心)和DLR(德国航空航天中心)的机器人样品返回任务,计划于2024年发射。该任务旨在回答火卫一和火卫一的起源问题,这也将有助于了解我们太阳系最早时期的物质传输,以及水如何被带入地球。除了负责采样和返回地球的JAXA的MMX母舰外,CNES和DLR建造的小型漫游车还可以降落在火卫一上进行实地测量,类似于Ryugu上的MASCOT(移动小行星表面侦察员)。 MMX流动站是四轮驱动的自主系统,尺寸为41厘米×37厘米×30厘米,重量约为25千克。流动站车体中集成了多种科学仪器和照相机。流动站车体为矩形箱的形式。侧面附有四只脚,每只脚一个轮子。当流动站脱离母舰时,腿在流动站主体的侧面折叠在一起。当流动站被动降落(没有降落伞或制动火箭)降落在火卫一上时,腿部将自动操纵以使流动站直立。火卫一的一天持续7.65个地球小时,这为三个地球月的总任务时间带来了大约300个极端温度循环。这些周期以及白天和晚上之间大范围的表面温度是流动站的主要设计驱动力。本文详细介绍了MMX漫游器运动子系统的开发。

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