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首页> 外文期刊>IEEE Transactions on Pattern Analysis and Machine Intelligence >Scale-based detection of corners of planar curves
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Scale-based detection of corners of planar curves

机译:基于比例的平面曲线拐角检测

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A technique for detecting and localizing corners of planar curves is proposed. The technique is based on Gaussian scale space, which consists of the maxima of absolute curvature of the boundary function presented at all scales. The scale space of isolated simple and double corners is first analyzed to investigate the behavior of scale space due to smoothing and interactions between two adjacent corners. The analysis shows that the resulting scale space contains line patterns that either persist, terminate, or merge with a neighboring line. Next, the scale space is transformed into a tree that provides simple but concise representation of corners at multiple scales. Finally, a multiple-scale corner detection scheme is developed using a coarse-to-fine tree parsing technique. The parsing scheme is based on a stability criterion that states that the presence of a corner must concur with a curvature maximum observable at a majority of scales. Experiments were performed to show that the scale space corner detector is reliable for objects with multiple-size features and noisy boundaries and compares favorably with other corner detectors tested.
机译:提出了一种检测和定位平面曲线拐角的技术。该技术基于高斯尺度空间,该空间由在所有尺度上呈现的边界函数的绝对曲率最大值组成。首先分析孤立的简单角和双角的比例空间,以研究由于两个相邻角之间的平滑和相互作用而导致的比例空间行为。分析表明,生成的比例尺空间包含可以持续存在,终止或与相邻线合并的线型。接下来,将比例尺空间转换为一棵树,该树提供多个比例尺上角的简单但简洁的表示。最后,使用粗糙到精细的树解析技术开发了多尺度角检测方案。解析方案基于稳定性标准,该标准规定拐角的存在必须与大多数比例下可观察到的曲率最大值一致。实验表明,尺度空间角检测器对于具有多种尺寸特征和嘈杂边界的物体是可靠的,并且与测试的其他角检测器相比具有优势。

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