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Depth, contrast and view-based homing in outdoor scenes

机译:在室外场景中基于深度,对比度和基于视图的归位

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摘要

Panoramic image differences can be used for view-based homing under natural outdoor conditions, because they increase smoothly with distance from a reference location (Zeil et al., J Opt Soc Am A 20(3):450–469, 2003). The particular shape, slope and depth of such image difference functions (IDFs) recorded at any one place, however, depend on a number of factors that so far have only been qualitatively identified. Here we show how the shape of difference functions depends on the depth structure and the contrast of natural scenes, by quantifying the depth- distribution of different outdoor scenes and by comparing it to the difference functions calculated with differently processed panoramic images, which were recorded at the same locations. We find (1) that IDFs and catchment areas become systematically wider as the average distance of objects increases, (2) that simple image processing operations—like subtracting the local mean, difference-of-Gaussian filtering and local contrast normalization—make difference functions robust against changes in illumination and the spurious effects of shadows, and (3) by comparing depth-dependent translational and depth-independent rotational difference functions, we show that IDFs of contrast-normalized snapshots are predominantly determined by the depth-structure and possibly also by occluding contours in a scene. We propose a model for the shape of IDFs as a tool for quantitative comparisons between the shapes of these functions in different scenes.
机译:全景图像差异可用于在自然室外条件下基于视图的归位,因为它们会随着距参考位置的距离而平滑增加(Zeil等人,J Opt Soc Am A 20(3):450-469,2003)。但是,在任何地方记录的这种图像差异函数(IDF)的特定形状,斜率和深度都取决于许多因素,到目前为止,这些因素仅在质量上得到了确定。在这里,我们通过量化不同室外场景的深度分布,并将其与用不同处理的全景图像计算出的差函数进行比较,展示差函数的形状如何取决于自然场景的深度结构和对比度,这些差函数记录在相同的位置。我们发现(1)随着目标平均距离的增加,IDF和集水区会系统地变宽;(2)简单的图像处理操作(例如减去局部均值,高斯差分滤波和局部对比度归一化)会产生差分函数(3)通过比较与深度相关的平移和与深度无关的旋转差函数,我们可以证明对比度归一化快照的IDF主要由深度结构确定,并且可能通过遮挡场景中的轮廓。我们提出了IDF形状的模型,作为在不同场景中这些功能的形状之间进行定量比较的工具。

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  • 来源
    《Biological Cybernetics》 |2007年第5期|519-531|共13页
  • 作者

    Wolfgang Stürzl; Jochen Zeil;

  • 作者单位

    ARC Centre of Excellence in Vision Science and Centre for Visual Sciences Research School of Biological Sciences The Australian National University PO Box 475 Canberra ACT 2601 Australia;

    ARC Centre of Excellence in Vision Science and Centre for Visual Sciences Research School of Biological Sciences The Australian National University PO Box 475 Canberra ACT 2601 Australia;

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