基于直接凸性估计的感兴趣区域检测与伪装破坏

A. Tankus, Y. Yeshurun
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引用次数: 20

摘要

感兴趣区域的检测通常基于边缘图。我们提出了一种新的基于非边缘的感兴趣区域检测机制,该机制从图像中提取3D信息。我们的算子基于对强度值的直接处理来检测光滑的三维凸和凹物体。用数学方法证明了一大族函数的不变性。因此,与大多数其他注意力算子相比,我们的算子对光照、方向和尺度的变化具有鲁棒性。该操作器还被证明可以有效地检测在噪声区域伪装的3D物体。与基于边缘的注意算子进行了广泛的比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Detection of regions of interest and camouflage breaking by direct convexity estimation
Detection of regions of interest is usually based on edge maps. We suggest a novel nonedge-based mechanism for detection of regions of interest, which extracts 3D information from the image. Our operator detects smooth 3D convex and concave objects based on direct processing of intensity values. Invariance to a large family of functions is mathematically proved. It follows that our operator is robust to variation in illumination, or orientation, and scale, in contrast with most other attentional operators. The operator is also demonstrated to efficiently detect 3D objects camouflaged in noisy areas. An extensive comparison, with edge-based attentional operators is delineated.
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