百家乐怎么玩-澳门百家乐官网娱乐城网址_网上百家乐是不是真的_全讯网888 (中国)·官方网站

Link Copied.
System And Method For Gaze Estimation
Communications & Information
Health & Wellness
Manufacturing
Computer/AI/Data Processing and Information Technology
Robotics
Sensors
Smart Mobility and Electric Vehicle

中文版本

image re.png

Opportunity

Gaze tracking technique can be used to determine where the user is looking at by monitoring, in real-time, the eye motions of freely-moving users. The general challenges of 3D gaze estimation for head-mounted eye tracking systems are inflexible marker-based calibration procedure and significant errors of depth estimation.
Some high-end Mobile Head-mounted Gaze Trackers (HMGTs) address the said issues by employing fully calibrated geometrical systems, while for low-cost HMGTs the eyeball positions can be estimated by formulating a nonlinear optimization problem aims at the reduction of angular differences between the training gaze direction and prediction ones. However, those existing commonly-used unconstrained optimization may provide an erroneous eye position, which leads to unsatisfactory generalization capacities.

Technology

The present invention relates to a system and method for gaze estimation that includes processing training data and determining one or more local-learning base gaze estimation model based on the training data. The local-learning base gaze estimation model(s) can be used for determining one or both of: 2D gaze points in a scene image and 3D gaze points in scene camera coordinates.
To acquire the accurate 3D structure of the environment, an RGBD camera is applied as the scene camera of the system. By adopting the saliency detection method, saliency maps can be acquired through scene images, and 3D salient pixels in the scene are considered potential 3D calibration targets. The 3D eye model is built on the basis of eye images to determine gaze vectors. By combining 3D salient pixels and gaze vectors, the auto-calibration can be achieved with our calibration method. Finally, the 3D gaze point is obtained through the calibrated gaze vectors, and the point cloud is generated from the RGBD camera. It presents a great improvement in depth measurement, which is sufficient for tracking users' visual attention in real scenes.

Advantages

  • It only requires the basic hardware setup with two eye cameras.
  • For the 2-D gaze point estimation, the parallax and interpolation/extrapolation errors can be adequately compensated via designing a suitable regression model and training data acquisition process to collect an informative distribution of training data.
  • For the 3-D gaze point estimation, the regression-based method can be used without the requirements of the knowledge of precise eyeball models and the calibration for the eye cameras.
  • It can make eye tracking techniques accessible to eyewear users, which presents a significant portion of the entire population.

Applications

  • Headset of Virtual Reality (VR) and Augment Reality (AR)
  • Patients of Locked-in Syndrome
IP Status
Patent granted
Technology Readiness Level (TRL)
2
Inventor(s)
Questions about this Technology?
Contact Our Tech Manager
Contact Our Tech Manager
System And Method For Gaze Estimation

 

Personal Information

Organization Type
Interest Areas
百家乐官网打劫法| 威尼斯人娱乐场色碟| 大发888游戏下载平台| 百家乐官网牌数计算法| 百家乐官网玩法注意事项| 为什么百家乐官网玩家越来越多选择网上百家乐官网 | 百家乐官网龙虎桌布| 叶氏百家乐平注技巧| 新盈国际| 易胜博百家乐输| 在线赌博平台| 现金百家乐攻略| 百家乐官网牌机的破解法| 模拟百家乐下载| 百家乐官网游戏机在哪有| 威尼斯人娱乐场28| 澳门百家乐新濠天地| 怎样玩百家乐官网看路| 德州扑克大小顺序| 百家乐官网桌子定制| 网上百家乐官网大转轮| 德州扑克 下载| 678百家乐博彩娱乐场开户注册| 百家乐官网庄闲统计数| 最好的百家乐官网博彩公司| 在线百家乐合作| 澳门百家乐官网真人娱乐场| 大发888免费送奖金| 七匹狼百家乐官网的玩法技巧和规则 | 德州百家乐官网赌博规则| 真人百家乐官网好不好玩| 百家乐官网全自动分析软件| 百家乐官网长龙有几个| 申博太阳城娱乐| 黄金城百家乐官网苹果版| 百家乐官网实战玩法| 大发888客服电话 在线| 百家乐21点| 百家乐网站开户| 百家乐官网贴| 网上真钱麻将游戏|