Facial Orientation and Eye-Gaze Detection Based on Real-Time 3D Facial Imaging By Using Correlation Image Sensor

Shu Zhan, T. Kurihara, S. Ando
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引用次数: 1

Abstract

3D facial orientation and eye-gaze detection is one hot area in human-machine interaction and application, it is also a challenging field in computer vision, pattern recognition and image sensing. We designed a real-time 3D facial orientation and eye-gaze detection system based on 3D real-time facial imaging system by using three-phase correlation image sensor. Based on the normal vector map and intensity image obtained by our imaging system simultaneously, the differential geometry theory is employed to find the key points of face image, according to these key points and curvature feature of face, the important eye area could be segmented from the face image. The optical flow algorithm originally presented by Bruce D. Lucas and Takeo Kanade is implemented to get the detection result. The experiments show that the performance for our test is satisfying
基于相关图像传感器的实时三维人脸成像的人脸方向和视线检测
三维人脸定位与人眼注视检测是人机交互与应用的一个热点领域,也是计算机视觉、模式识别和图像感知领域的一个具有挑战性的领域。在三维实时人脸成像系统的基础上,利用三相相关图像传感器设计了一种实时三维人脸方位与视线检测系统。基于成像系统同时获得的法向量图和强度图像,利用微分几何理论找到人脸图像的关键点,根据关键点和人脸的曲率特征,从人脸图像中分割出重要的眼睛区域。实现了Bruce D. Lucas和Takeo Kanade最初提出的光流算法来获得检测结果。实验表明,我们的测试结果令人满意
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