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Detecting and localizing edges composed of steps, peaks and roofs

机译:检测和定位由台阶,山峰和屋顶组成的边缘

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The projection of depth or orientation discontinuities in a physical scene results in image intensity edges which are not ideal step edges but are more typically a combination of step, peak and roof profiles. Most edge detection schemes ignore the composite nature of these edges, resulting in systematic errors in detection and localization. The problem of detecting and localizing these edges is addressed, along with the problem of false responses in smoothly shaded regions with constant gradient of the image brightness. A class of nonlinear filters, known as quadratic filters, is appropriate for this task, while linear filters are not. Performance criteria are derived for characterizing the SNR, localization and multiple responses of these filters in a manner analogous to Canny's criteria for linear filters. A two-dimensional version of the approach is developed which has the property of being able to represent multiple edges at the same location and determine the orientation of each to any desired precision. This permits junctions to be localized without rounding. Experimental results are presented.
机译:物理场景中深度或方向不连续性的投影导致图像强度边缘不是理想的阶梯边缘,但更典型地是阶梯,峰值和屋顶轮廓的组合。大多数边缘检测方案都忽略了这些边缘的复合特性,从而导致检测和定位方面的系统性错误。解决了检测和定位这些边缘的问题,以及在图像亮度具有恒定梯度的平滑阴影区域中出现错误响应的问题。一类称为二次滤波器的非线性滤波器适用于此任务,而线性滤波器则不合适。以类似于坎尼线性滤波器准则的方式得出性能准则,以表征这些滤波器的SNR,定位和多重响应。开发了该方法的二维版本,其具有以下特性:能够在同一位置表示多个边缘,并确定每个边缘的方向至任何所需的精度。这样就可以将结点局部化而无需四舍五入。给出了实验结果。

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