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Robustifying semantic cognition of traversability across wearable RGB-depth cameras

机译:穿着可穿戴式RGB深度相机的遍历的语义认知

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摘要

Semantic segmentation represents a promising means to unify different detection tasks, especially pixel-wise traversability perception as the fundamental enabler in robotic vision systems aiding upper-level navigational applications. However, major research efforts are being put into earning marginal accuracy increments on semantic segmentation benchmarks, without assuring the robustness of real-time segmenters to be deployed in assistive cognition systems for the visually impaired. In this paper, we explore in a comparative study across four perception systems, including a pair of commercial smart glasses, a customized wearable prototype, and two portable red-green-blue-depth (RGB-D) cameras that are being integrated in the next generation of navigation assistance devices. More concretely, we analyze the gap between the concepts of "accuracy" and "robustness" on the critical traversability-related semantic scene understanding. A cluster of efficient deep architectures is proposed, which is built using spatial factorizations, hierarchical dilations, and pyramidal representations. Based on these architectures, this research demonstrates the augmented robustness of semantically traversable area parsing against the variations of environmental conditions in diverse RGB-D observations, and sensorial factors such as illumination, imaging quality, field of view, and detectable depth range. (C) 2019 Optical Society of America
机译:语义分割代表了统一不同的检测任务的承诺手段,特别是作为机器人视觉系统中的基本推动者统一的像素明智的遍历感知。然而,主要研究努力正在对语义分割基准进行边际准确性增量,而无需确保实时分部人员在视力障碍的辅助认知系统中部署的稳健性。在本文中,我们探讨了四个感知系统的比较研究,包括一对商用智能眼镜,定制的可穿戴原型和正在整合在的两个便携式红色(RGB-D)相机下一代导航辅助设备。更具体地说,我们分析了“准确性”与“稳健性”概念之间的差距对关键的遍历令人遗憾的关系相关的语义场景理解。提出了一组高效的深层架构,它是使用空间因素,分层扩张和金字塔陈述构建的。基于这些架构,该研究证明了针对各种RGB-D观察中的环境条件的变化和传感因子的增强稳健性,以及诸如照明,成像质量,视野和可检测的深度范围之类的感觉因素。 (c)2019年光学学会

著录项

  • 来源
    《Applied optics》 |2019年第12期|共15页
  • 作者单位

    Zhejiang Univ State Key Lab Modem Opt Instrumentat Hangzhou 310027 Zhejiang Peoples R China;

    Univ Alcala De Henares Dept Elect Madrid 28805 Spain;

    Univ Alcala De Henares Dept Elect Madrid 28805 Spain;

    Zhejiang Univ State Key Lab Modem Opt Instrumentat Hangzhou 310027 Zhejiang Peoples R China;

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  • 正文语种 eng
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