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Face recognition using interpolated Bezier curve based representation

机译:使用基于Bezier曲线的内插表示进行人脸识别

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This paper proposes an efficient face recognition scheme, which incorporates certain methods. In this scheme, edges are obtained from sobelled face images. The major feature areas are segmented and principal curves are obtained by applying thinning algorithm on the features of resulting face image. A modified thinning algorithm based on line sweep procedures is used. A line sweep is a process where the plane is divided into parallel slabs by lines passing through certain "events" and then items are processed according to an order of the slabs [A Line Sweep thinning Algorithm]. A new method for Bezier contour point interpolation is used after locating the two end points of the curve on the prime facial features. The two control points of a Bezier curve are interpolated by this method. The Bezier points i.e. the two end points of a curve and the two control points, form the line segments whose Hausdroff distances are calculated as specified in the algorithm discussed in this paper. The recognition rate is 100% on normal faces and also on faces with some simple expressions.
机译:本文提出了一种有效的人脸识别方案,其中结合了某些方法。在该方案中,从钟面图像获得边缘。通过对所得的人脸图像特征进行细化处理,对主要特征区域进行分割,得到主曲线。使用了基于行扫描过程的改进的稀疏算法。线扫描是指通过经过某些“事件”的线将平面划分为多个平行板,然后根据这些板的顺序对项目进行处理的过程[线扫描细化算法]。在主要面部特征上找到曲线的两个端点后,使用一种新的Bezier轮廓点插值方法。贝塞尔曲线的两个控制点通过此方法进行插值。 Bezier点,即曲线的两个端点和两个控制点,形成了线段,其线段的Hausdroff距离的计算方法与本文所讨论的算法相同。在正常人脸以及带有一些简单表情的人脸上的识别率是100%。

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