首页> 外文会议>International Workshop on Graphics Recognition(GREC 2005); 20050825-26; Hong Kong(CN) >A Contour Shape Description Method Via Transformation to Rotation and Scale Invariant Coordinates System
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A Contour Shape Description Method Via Transformation to Rotation and Scale Invariant Coordinates System

机译:通过变换到旋转和尺度不变坐标系的轮廓形状描述方法

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Rotation and scale variations complicate the matters of shape description and recognition because these variations change the location of points composing the shape. However, some geometric invariant points and the relations among them are not changed by these variations. Therefore, if points in image space depicted with the x-y coordinates system can be transformed into a new coordinates system that are invariant to rotation and scale, the problem of shape description and recognition becomes easier. This paper presents a shape description method via transformation from the image space into the invariant feature space having d- and c-axes: representing relative distance from a cen-troid and contour segment curvature (CSC) respectively. The relative distance describes how far a point departs from the centroid, and the CSC represents the degree of fluctuation in a contour segment. After transformation, mesh features were used to describe the shape mapped onto the d-c plane. Traditional mesh features extracted from the x-y plane are sensitive to rotation, whereas the mesh features from the d-c plane are robust to it. Experimental results show that the proposed method is robust to rotation and scale variations.
机译:旋转和比例变化使形状描述和识别变得复杂,因为这些变化会改变组成形状的点的位置。但是,某些几何不变点及其之间的关系不会因这些变化而改变。因此,如果可以将用x-y坐标系表示的图像空间中的点转换为不变的旋转和缩放比例的新坐标系,则形状描述和识别的问题将变得更加容易。本文提出了一种从图像空间到具有d轴和c轴的不变特征空间的变换的形状描述方法:分别表示距中心三角形和轮廓段曲率(CSC)的相对距离。相对距离描述点距质心的距离,CSC表示轮廓线段中的波动程度。转换后,使用网格特征描述映射到d-c平面上的形状。从x-y平面提取的传统网格特征对旋转敏感,而从d-c平面提取的网格特征对此具有鲁棒性。实验结果表明,该方法对旋转和尺度变化具有鲁棒性。

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