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Noise-Robust, Reconfigurable Canny Edge Detection and its Hardware Realization

机译:噪声稳健,可重新配置的Canny Edge检测及其硬件实现

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Edge detection is a common operation in image/video processing applications. Canny edge detection, which performs well in different conditions, is one of the most popular and widely used of these algorithms. Canny & x2019;s superior performance is due mainly to its provision of the ability to adjust the output quality by manipulating the edge detection parameters, Sigma and Threshold. Calculating values for these two parameters on-the-fly and based on the application & x2019;s circumstances requires additional preprocessing, which increases the algorithm & x2019;s computational complexity. To reduce the complexity, several proposed methods simply employ precalculated, fixed values for the Canny parameters (based on either the worst or typical conditions), which sacrifices the edge detection & x2019;s performance in favor of the computational complexity. In this paper, an adaptive parameter selection method is proposed that selects values for the Canny parameters from a configuration table (rather than calculating in run-time), based on the estimated noise intensity of the input image and the minimum output performance that can satisfy the application requirements. This adaptive implementation of the Canny algorithm ensures that, while the edge detection performance (noise robustness) is higher than state-of-the-art counterparts in different circumstances, the execution time of the proposed Canny remains lower than those of recent cutting-edge Canny realizations.
机译:边缘检测是图像/视频处理应用中的常见操作。在不同条件下表现良好的Canny Edge检测是这些算法最受欢迎和广泛使用的算法之一。 Canny&x2019; S的优越性性能主要是由于其提供了通过操纵边缘检测参数,Sigma和阈值来调整输出质量的能力。从飞行中计算这两个参数的值并基于应用程序和X2019; S情况需要额外的预处理,这增加了算法和X2019; S计算复杂性。为了降低复杂性,几种提出的方​​法只采用了Canny参数的预先计算的固定值(基于最坏的或典型条件),其牺牲了边缘检测和X2019; S的性能,支持计算复杂性。在本文中,提出了一种自适应参数选择方法,其基于输入图像的估计噪声强度和可以满足的最小输出性能,从配置表(而不是在运行时计算的运行时间计算)为Canny参数的值选择申请要求。这种自适应实现的Canny算法确保了,虽然边缘检测性能(噪声稳健性)高于在不同情况下高于最先进的对应物,所提出的Canny的执行时间仍然低于最近的尖端边缘的执行时间大葱的实现。

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