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Boundary detection using quadratic filters: performance criteria and experimental assessment

机译:使用二次滤波器进行边界检测:性能标准和实验评估

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Abstract: It is well known that 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 steps, peak, and roof profiles. However, most edge detection schemes ignore the composite nature of intensity edges, resulting in systematic errors in detection and localization. We have addressed the problem of detecting and localizing these edges, while at the same time solving the problem of false responses in smoothly shaded regions with constant gradient of the image brightness. We have shown that a class of nonlinear filters, known as quadratic filters are appropriate for this task, while linear filters are not. In this paper a series of performance criteria are derived for characterizing the SNR, localization, and multiple responses of these quadratic filters in a manner analogous to Canny's criteria for linear filters. Additionally, we show experiments on a series of images varying systematically the parameters of the edge detector. !17
机译:摘要:众所周知,物理场景中深度或方向不连续性的投影会导致图像强度边缘不是理想的阶梯边缘,而通常是阶梯,峰和屋顶轮廓的组合。但是,大多数边缘检测方案都忽略了强度边缘的复合性质,从而导致检测和定位方面的系统性错误。我们已经解决了检测和定位这些边缘的问题,同时解决了在图像亮度具有恒定梯度的平滑阴影区域中错误响应的问题。我们已经表明,一类称为二次滤波器的非线性滤波器适用于此任务,而线性滤波器则不适合。在本文中,以类似于线性滤波器的Canny准则的方式,导出了一系列性能准则,用于表征这些二次滤波器的SNR,定位和多重响应。此外,我们展示了一系列图像的实验,这些图像系统地改变了边缘检测器的参数。 !17

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