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A Minimum Scale Architecture for Rover-Based Sample Acquisition and Caching

机译:基于流动福的样本采集和缓存的最小规模架构

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The Minimum Scale Sample Acquisition and Caching (MinSAC) architecture has been developed to enable rover-based sample acquisition and caching while minimizing the system mass. The MinSAC architecture is a version of the previously developed Integrated Mars Sample Acquisition and Handling (IMSAH) architecture. The MinSAC implementation utilizes the sampling manipulator both for sampling and sample tube transfer. This significantly reduces the number of actuators in the sample acquisition and caching subsystem. A core sample is acquired directly into its sample tube in the coring bit. The bit is transferred and released on the rover. A tube gripper on the robotic arm turret pulls the filled sample tube out of the back of the coring bit and the tube is sealed. The sample tube is then placed in the return sample canister. A new tube is placed in the bit for acquisition of another sample.
机译:已经开发出最低规模样本采集和缓存(MINSAC)架构,以实现基于流动的样品采集和缓存,同时最小化系统质量。 MinSAC架构是先前开发的集成火星样本采集和处理(IMSAH)架构的版本。 MinSAC实现利用采样机械手来采样和样品管转移。 这显着降低了样本采集和缓存子系统中的执行器的数量。 将芯样品直接进入其取芯钻头中的样品管中。 该位被转移并释放在流动站上。 机器人臂塔上的管夹具将填充的样品管拉出芯片钻头的背面,管子被密封。 然后将样品管置于返回样品罐中。 将新的管放置在钻头中以获取另一个样品。

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