首页> 外文期刊>Human-Machine Systems, IEEE Transactions on >Gaze Estimation From Color Image Based on the Eye Model With Known Head Pose
【24h】

Gaze Estimation From Color Image Based on the Eye Model With Known Head Pose

机译:基于已知头部姿态的眼睛模型的彩色图像注视估计

获取原文
获取原文并翻译 | 示例

摘要

This paper proposes a novel method of gaze estimation based on an eye model with known head pose. The most crucial factors in the eye-model-based approach to gaze estimation are the 3-D positions of the eyeball and iris centers. In the proposed method, an RGB-D camera, Kinect sensor, is used to obtain the head pose as well as the eye region of the color image. The 3-D position of the eyeball center is determined in the calibration phase by gazing at the center of the color image camera. Then, to estimate the 3-D position of the iris center, the 3-D contour of the iris is projected onto the color image with the known head pose obtained from color and depth cues of an RGB-D camera. Thus, the ellipse of the iris in the image can be described using only two parameters: the yaw and pitch angles of the eyeball in the iris coordinate system, rather than the conventional five parameters of an ellipse. The proposed method can fit an iris that is not complete due to eyelid occlusion. The average errors of vertical and horizontal angles of the gaze estimation for seven subjects are 5.9° and 4.4°, respectively. The processing speed is as high as 330 ms per frame. However, for lower resolution and poor illumination images, as tested on the public database EYEDIAP, the performance of the proposed eye-model-based method is inferior to that of the-state-of-the-art appearance-based method.
机译:本文提出了一种基于已知头部姿态的眼睛模型的凝视估计新方法。在基于眼模型的注视估计方法中,最关键的因素是眼球和虹膜中心的3D位置。在提出的方法中,使用RGB-D相机Kinect传感器来获取彩色图像的头部姿势和眼睛区域。眼球中心的3D位置是在校准阶段通过注视彩色图像相机的中心确定的。然后,为了估计虹膜中心的3D位置,将虹膜的3D轮廓以从RGB-D摄像机的颜色和深度提示中获得的已知头部姿势投影到彩色图像上。因此,可以仅使用两个参数来描述图像中虹膜的椭圆:虹膜坐标系中眼球的偏航角和俯仰角,而不是椭圆的常规五个参数。所提出的方法可以适合由于眼睑闭塞而不完全的虹膜。七个对象凝视估计的垂直和水平角度的平均误差分别为5.9°和4.4°。处理速度高达每帧330毫秒。但是,对于较低的分辨率和较差的照明图像,如在公共数据库EYEDIAP上测试的那样,建议的基于眼模型的方法的性能不如基于最新外观的方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号