首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Filtering and processing of panoramic images obtained using a camera and a wide-angle-imaging reflective surface
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Filtering and processing of panoramic images obtained using a camera and a wide-angle-imaging reflective surface

机译:使用相机和广角成像反射面获得的全景图像的滤波和处理

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There is an increasing interest in wide-angle imaging of the environment using curved reflective surfaces. With this comes the need for appropriate filtering and processing of the acquired images. Here we present a technique for homogeneous, fast filtering of panoramic images captured using a camera and a wide-angle-imaging reflective surface. Imaging of the panoramic environment onto a two-dimensional (2-D) plane necessarily introduces spatial distortions such as stretching and bending that vary with the viewing direction. Therefore, if the panoramic image is to be filtered homogeneously in all viewing directions, it is necessary to match the filtering to the distortions. We show how this can be accomplished. The image acquired by the camera is first digitally unwarped and represented in Cartesian coordinates representing azimuth and elevation. The mappings of patches of uniform size and shape on the viewsphere are then established. Next, for each filter patch the local mappings of great circles along two principal axes (along the local longitudinal and elevational directions) on the image plane are determined. The mappings of these great circles are used to perform the 2-D convolution required by the filtering operation. Convolution along the directions of local, mutually orthogonal great circles permits the filtering to be carried out in a quasi-separable fashion, resulting in increased computational speed and efficiency. Examples of homogeneous filtering using this procedure are presented.
机译:使用弯曲的反射面的环境的广角成像越来越引起人们的兴趣。因此,需要对采集的图像进行适当的过滤和处理。在这里,我们提出一种技术,用于对使用相机和广角成像反射面捕获的全景图像进行均匀,快速的过滤。将全景环境成像到二维(2-D)平面上必然会引入空间扭曲,例如拉伸和弯曲,这些扭曲会随观察方向而变化。因此,如果要在所有观看方向上对全景图像进行均匀过滤,则必须使过滤与失真匹配。我们展示了如何做到这一点。首先对摄像机获取的图像进行数字变形处理,并以代表方位角和仰角的笛卡尔坐标表示。然后在视球上建立大小和形状均一的面片的映射。接下来,对于每个滤光片,确定在图像平面上沿两个主轴线(沿局部纵向和仰角方向)的大圆的局部映射。这些大圆的映射用于执行滤波操作所需的2D卷积。沿着局部相互正交的大圆的方向进行卷积,可以以准分离的方式进行滤波,从而提高了计算速度和效率。给出了使用此过程进行均匀过滤的示例。

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