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Mars Science Laboratory Sample Acquisition, Sample Processing and Handling: Subsystem Design and Test Challenges

机译:火星科学实验室样品采集,样品处理和处理:子系统设计和测试挑战

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The Sample Acquisition/Sample Processing and Handling subsystem for the Mars Science Laboratory is a highly-mechanized, Rover-based sampling system that acquires powdered rock and regolith samples from the Martian surface, sorts the samples into fine particles through sieving, and delivers small portions of the powder into two science instruments inside the Rover. SA/SPaH utilizes 17 actuated degrees-of-freedom to perform the functions needed to produce 5 sample pathways in support of the scientific investigation on Mars. Both hardware redundancy and functional redundancy are employed in configuring this sampling system so some functionality is retained even with the loss of a degree-of-freedom. Intentional dynamic environments are created to move sample while vibration isolators attenuate this environment at the sensitive instruments located near the dynamic sources. In addition to the typical flight hardware qualification test program, two additional types of testing are essential for this kind of sampling system: characterization of the intentionally-created dynamic environment and testing of the sample acquisition and processing hardware functions using Mars analog materials in a low pressure environment. The overall subsystem design and configuration are discussed along with some of the challenges, tradeoffs, and lessons learned in the areas of fault tolerance, intentional dynamic environments, and special testing.
机译:火星科学实验室的样品采集/样品处理和处理子系统是基于漫游者的高度机械化的采样系统,可从火星表面上采集粉末状的岩石和碎屑样品,通过筛分将样品分类为细颗粒,然后将其分成小份将粉末放入流动站内的两个科学仪器中。 SA / SPaH利用17个激活的自由度来执行生成5个样本路径所需的功能,以支持对火星的科学研究。在配置此采样系统时,同时使用了硬件冗余和功能冗余,因此即使失去了自由度也保留了某些功能。在振动隔离器使位于动态源附近的敏感仪器上的振动隔离器使该环境衰减的同时,会创建有意的动态环境来移动样品。除了典型的飞行硬件资格测试程序外,对于这种采样系统,还必须进行两种其他类型的测试:刻意创建的动态环境的特征以及使用火星模拟材料在较低的温度下对样品采集和处理硬件功能进行测试压力环境。讨论了整个子系统的设计和配置,以及在容错,有意动态环境和特殊测试领域中的一些挑战,折衷和经验教训。

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