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Modeling Regions of Interest on Orbital and Rover Imagery for Planetary Exploration Missions

机译:为行星探索任务在轨道和流动站图像上建模感兴趣的区域

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摘要

Planetary rover exploration missions require accurate and computationally efficient robot localization in order to perform complex and cooperative tasks. The global localization on planetary environments can be competently addressed by incorporating orbital and ground rover imagery. An indicative approach could include (1) the extraction of regions of interest (ROIs) in orbital images, (2) the extraction of ROIs in rover images, (3) the ROI matching, and (4) the localization. In order to perform adequately in ROI matching, a model should be able to detect common ROIs. The work in hand tackles the problem of extracting such regions of interest that are observable on both orbital and rover images. The dedicated model that was designed and implemented contains a detection and a classification part. The detection of the ROIs is based on both their texture and their geometrical properties. Classification was performed on the result of the detection in order to annotate the ROIs and discard any outliers caused by false detection. The results prove that the model is able to detect commonly observable regions and, therefore, is considered to be an adequate preprocessing step in the context of a global rover localization system.
机译:行星漫游车探索任务需要精确且计算高效的机器人定位,才能执行复杂且协作的任务。通过合并轨道和地面流动站图像,可以适当解决行星环境的全球定位问题。指示性方法可以包括(1)提取轨道图像中的感兴趣区域(ROI),(2)提取流动站图像中的ROI,(3)ROI匹配和(4)定位。为了在ROI匹配中充分发挥作用,模型应该能够检测常见的ROI。正在进行的工作解决了提取在轨道和流动站图像上都可以观察到的此类感兴趣区域的问题。设计和实现的专用模型包含检测和分类部分。 ROI的检测基于其纹理和几何特性。对检测结果进行分类,以注释ROI并丢弃由错误检测导致的任何异常值。结果证明该模型能够检测通常可观察到的区域,因此,在全球漫游车定位系统的背景下,该模型被认为是适当的预处理步骤。

著录项

  • 来源
    《Cybernetics and Systems》 |2016年第4期|180-205|共26页
  • 作者单位

    Laboratory of Robotics and Automation, School of Engineering, Democritus University of Thrace, Xanthi, Greece,Automation and Robotics Section (TEC-MMA), European Space Agency, Noordwijk, The Netherlands,Laboratory of Robotics and Automation, School of Engineering, Democritus University of Thrace, Vas. Sophias 12, GR-67100, Xanthi, Greece;

    Laboratory of Robotics and Automation, School of Engineering, Democritus University of Thrace, Xanthi, Greece;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Global localization; orbital imagery; pattern recognition; planetary rovers; region of interest; rover imagery;

    机译:全球本地化;轨道影像模式识别;行星漫游者感兴趣的区域;漫游者图像;

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