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Autonomous Spectral Discovery and Mapping Onboard the EO-1 Spacecraft

机译:EO-1航天器上的自主光谱发现和映射

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Imaging spectrometers are valuable instruments for space exploration, but their large data volumes limit the number of scenes that can be downlinked. Missions could improve science yield by acquiring surplus images and analyzing them onboard the spacecraft. This onboard analysis could generate surficial maps, summarizing scenes in a bandwidth-efficient manner to indicate data cubes that warrant a complete downlink. Additionally, onboard analysis could detect targets of opportunity and trigger immediate automated follow-up measurements by the spacecraft. Here, we report a first step toward these goals with demonstrations of fully automatic hyperspectral scene analysis, feature discovery, and mapping onboard the Earth Observing One (EO-1) spacecraft. We describe a series of overflights in which the spacecraft analyzes a scene and produces summary maps along with lists of salient features for prioritized downlink. The onboard system uses a superpixel endmember detection approach to identify compositionally distinctive features in each image. This procedure suits the limited computing resources of the EO-1 flight processor. It requires very little advance information about the anticipated spectral features, but the resulting surface composition maps agree well with canonical human interpretations. Identical spacecraft commands detect outlier spectral features in multiple scenarios having different constituents and imaging conditions.
机译:成像光谱仪是进行太空探索的宝贵工具,但其庞大的数据量限制了可下行链路的场景数量。任务可以通过获取多余的图像并在航天器上进行分析来提高科学产量。这种机载分析可以生成表面地图,以节省带宽的方式汇总场景,以指示保证完整下行链路的数据立方体。此外,机载分析可以发现机会目标并触发航天器立即进行自动后续测量。在这里,我们通过实现全自动高光谱场景分析,特征发现以及在地球观测一号(EO-1)航天器上进行制图的演示,向这些目标迈出了第一步。我们描述了一系列飞越,飞船在其中分析了一个场景并生成摘要地图以及用于优先下行链路的显着特征列表。机载系统使用超像素端构件检测方法来识别每个图像中组成上独特的特征。此过程适合EO-1飞行处理器的有限计算资源。它几乎不需要有关预期光谱特征的预先信息,但是生成的表面成分图与规范的人类解释非常吻合。相同的航天器命令在具有不同成分和成像条件的多个场景中检测异常光谱特征。

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