漫游者基本自主科学推理(EASIR)

T. Roush
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引用次数: 16

摘要

与火星探测器任务相关的时间、计算和通信资源的现有限制表明,对传感器数据的车载科学评估有助于减少人为操作计划,优化返回的科学数据量,并识别独特或新颖的数据,所有这些都有助于增加任务的科学回报。存在许多不同层次的科学自主权,每一个都影响着漫游者收集和返回的数据以及活动。讨论了几种用于识别地质学家和生物学家感兴趣的物体的计算算法。这些算法代表了产生科学意见的各种功能,并有几个场景说明了如何使用这些意见。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Essential autonomous science inference on rovers (EASIR)
Existing constraints on time, computational, and communication resources associated with Mars rover missions suggest on-board science evaluation of sensor data can contribute to decreasing human-directed operational planning, optimizing returned science data volumes, and recognition of unique or novel data, all of which act to increase the scientific return from a mission. Many different levels of science autonomy exist and each impacts the data collected and returned by, and activities of, rovers. Several computational algorithms, designed to recognize objects of interest to geologists and biologists, are discussed. The algorithms represent various functions producing scientific opinions and several scenarios illustrate how the opinions can be used.
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