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Concepts for a low-cost Mars micro mission

机译:低成本火星微任务的概念

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This paper summarises three novel micro-mission concepts for the low-cost exploration of the Martian system. These concepts have been studied under national funding with the aim of defining highly cost-effective options for the delivery of on-board instrumentation into Mars orbit for remote sensing or deployment of lander packages for surface exploration of the Martian system. All three missions use advanced electric propulsion to improve payload mass performance and miniaturised avionics either in the spacecraft bus or payload. Broadly, the three concepts are categorised according to mass: a constellation of micro-satellites (120 kg) in low Mars polar orbit for global atmospheric circulation/climate monitoring using radio occultation techniques; a single mini-satellite (310 kg) for studying composition and origins of Mars' moons Deimos and Phobos; and a single larger spacecraft (800 kg) based on a standard launcher adapter cone and carrying multiple micro-penetrators for measuring sub-surface water ice composition at pre-determined locations on the surface of Mars.
机译:本文总结了三种新颖的微任务概念,用于火星系统的低成本探索。这些概念已经在国家资助下进行了研究,目的是为将车载仪器送入火星轨道进行遥感或部署着陆器套件进行火星系统的地面探测定义高成本效益的选择。这三个任务均使用先进的电力推进技术,以改善有效载荷的质量性能,并改善航天器总线或有效载荷中的航空电子设备。广义上讲,这三个概念按质量分类:在低火星极轨道上的120千克微卫星群,用于利用无线电掩星技术进行全球大气环流/气候监测;一个单一的微型卫星(310公斤),用于研究火星卫星“德莫斯”和“火卫一”的组成和起源;一架更大的航天器(800千克),基于一个标准的发射器转接锥,并携带多个微穿透器,用于测量火星表面预定位置的地下水冰成分。

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