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MER: from landing to six wheels on Mars...twice

机译:MER:从着陆到火星上的六个飞轮……两次

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Application of the pathfinder landing system design to enclose the much larger Mars Exploration Rover required a variety of rover deployments to achieve the surface driving configuration. The project schedule demanded that software, design, engineering model test, and flight hardware build be accomplished in parallel. This challenge was met through (a) bounding unknown environments against which to design and test, (b) early mechanical prototype testing, (c) constraining the scope of on-board autonomy to survival-critical deployments, (d) executing a balance of nominal and off-nominal test cases, (e) developing off-nominal event mitigation techniques before landing, (f) flexible replanning in response to surprises during operations. Here is discussed several specific events encountered during initial MER surface operations.
机译:探路者着陆系统设计的应用要包围更大的火星探索漫游车,需要进行各种漫游车部署才能实现地面驱动配置。项目进度表要求并行完成软件,设计,工程模型测试和飞行硬件构建。通过(a)限制未知环境来进行设计和测试,(b)早期机械原型测试,(c)将机载自治的范围限制在对生存至关重要的部署上,(d)执行平衡的部署,从而克服了这一挑战。标称和标称测试用例,(e)在着陆前开发标称事件缓解技术,(f)应对操作过程中的突发事件灵活地重新计划。这里讨论了在初始MER表面操作期间遇到的几个特定事件。

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