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3D geometry-based face recognition in presence of eye and mouth occlusions

机译:基于几何的面部识别在眼睛和嘴闭合

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摘要

This study proposes a novel occlusions detection and restoration strategy. The aim is to success with 3D face recognition even when faces are partially occluded by external objects. The method, which relies on geometrical facial properties, is designed for managing two types of facial occlusions (eye and mouth occlusions due to hands). First occlusions are detected and (if present) classified, by considering their effects on the 3D points cloud. Then, the occluded regions are progressively removed, and finally, the non-occluded symmetrical regions are used to restore the missing information. After the restoration process, face recognition is performed relying on the restored facial information and on the localized landmarks. The land-marking methodology relies on derivatives and on 12 differential geometry descriptors. The discriminating features adopted for facial comparison include shape index histograms, Euclidean and geodetical distances between landmarks, facial curves, and nose volume. Obtained recognition rates, evaluated on the whole Bosphorus database and on our private dataset, ranging from 92.55 to 97.20% depending on the completeness of data.
机译:本研究提出了一种新型闭塞检测和恢复策略。即使在外部物体部分遮挡面部,目的是在3D面部识别方面取得成功。依赖于几何面部物质的方法,设计用于管理两种类型的面部闭合(眼睛和嘴闭合)。通过考虑它们对3D点云的影响,检测到第一个闭塞和(如果存在)分类。然后,逐渐去除遮挡区域,最后,非遮挡的对称区域用于恢复缺失的信息。在恢复过程之后,依赖于恢复的面部信息和局部地标进行面部识别。土地标记方法依赖于衍生物和12个差分几何描述符。面部比较采用的鉴别特征包括地标,面部曲线和鼻部体积之间的形状指数直方图,欧几里德和地理距离。获得的识别率,在整个Bosphorus数据库和我们的私人数据集上评估,根据数据的完整性,从92.55到97.20%的范围。

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