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Lunar Rover with Multiple Science Payload Handling Capability

机译:具有多种科学有效载荷处理能力的月球车

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A rover design study was undertaken for exploration of the Moon. Rovers that have been launched in the past carried a suite of science payload either onboard its body or on the robotic arm's end. No rover has so far been launched and tasked with "carrying and deploying" a payload on an extraterrestrial surface. This paper describes a lunar rover designed for deploying payload as well as carrying a suite of instruments onboard for conventional science tasks. The main consideration during the rover design process was the usage of existing, in-house technology for development of some rover systems. The manipulation subsystem design was derived from the technology of Light Weight Robot, a dexterous arm originally developed for terrestrial applications. Recent efforts have led to definition of a mission architecture for exploration of the Moon with such a rover. An outline of its design, the manipulating arm technology and the design decisions that were made has been presented.
机译:进行了一个月球车设计研究,以探索月球。过去发射的漫游车在其身体上或机器人手臂的末端都带有一套科学有效载荷。到目前为止,还没有任何漫游车被发射出去并承担过在地外表面“运载和部署”有效载荷的任务。本文介绍了一种月球车,该月球车设计用于部署有效载荷以及随身携带一套用于常规科学任务的仪器。在流动站设计过程中的主要考虑因素是使用现有的内部技术来开发一些流动站系统。操纵子系统的设计源自轻型机器人的技术,轻型机器人最初是为地面应用开发的灵巧手臂。最近的努力导致定义了这样的流动站探索月球的任务架构。概述了其设计,操纵臂技术和已做出的设计决策。

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