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    • 1. 发明申请
    • AUTOMATIC PUPILLARY DISTANCE MEASUREMENT SYSTEM AND MEASURING METHOD
    • 自动公差测量系统及测量方法
    • US20150146169A1
    • 2015-05-28
    • US14553991
    • 2014-11-25
    • ULSEE INC.
    • Zhou YeSheng-Wen JengYing-Ko LuShih Wei Liu
    • A61B3/11A61B3/00A61B3/14
    • A61B3/111A61B3/0025A61B3/0033A61B3/0083A61B3/14
    • Method for automatically measuring pupillary distance includes extracting facial features of face image, a head current center indicator is shown/displayed based on facial feature extraction, elliptical frame and target center indicator are shown, a first distance between head current center indicator and target center indicator is calculated to see if below a threshold range, then allowing head current center indicator, elliptical frame and target center indicator to disappear. Card window based on facial tracking result is shown. Credit card band detection is performed to see if located within card window. Card window then disappear. Elliptical frame of moving head and target elliptical frame are shown. Elliptical frame of the moving head is aligned with the target elliptical frame and maintaining a correct head posture. If elliptical frame of moving head is aligned with target elliptical frame, then allow them to disappear from view, and performing a pupillary distance measurement.
    • 自动测量瞳孔距离的方法包括提取脸部图像的面部特征,显示基于面部特征提取,椭圆框和目标中心指示器显示/显示头部当前中心指示器,头部当前中心指示器和目标中心指示器之间的第一距离 被计算为看到是否低于阈值范围,然后允许头当前中心指示符,椭圆框和目标中心指示符消失。 显示基于面部跟踪结果的卡片窗口。 执行信用卡频带检测,以查看是否位于卡窗口内。 卡片窗口然后消失。 显示了移动头和目标椭圆框的椭圆框。 移动头的椭圆形框架与目标椭圆形框架对齐并保持正确的头部姿势。 如果移动头的椭圆形框架与目标椭圆框架对齐,则允许它们从视野消失,并进行瞳孔距离测量。
    • 8. 发明申请
    • 2D IMAGE-BASED 3D GLASSES VIRTUAL TRY-ON SYSTEM
    • 基于2D图像的3D眼镜虚拟TRY-ON系统
    • US20160035133A1
    • 2016-02-04
    • US14447652
    • 2014-07-31
    • ULSee Inc.
    • Zhou YeChih-Ming ChangYing-Ko LuYi-Chia Hsu
    • G06T19/00G06T19/20G06T15/20
    • G06T19/006G06F3/12G06T15/60G06T2210/16
    • Method to create try-on experience wearing virtual 3D eyeglasses is provided using 2D image data of eyeglasses. Virtual 3D eyeglasses are constructed using set of 2D images for eyeglasses. Virtual 3D eyeglasses is configured onto 3D face or head model and being simulated as being fittingly worn by the wearer. Each set of 2D images for eyeglasses includes a pair of 2D lens images, a frontal frame image, and at least one side frame image. Upon detection of a movement of the face and head of wearer in real-time, the 3D face or head model and the configuration and alignment of virtual 3D eyeglasses are modified or adjusted accordingly. Features such as trimming off of portion of the glasses frame, shadow creating and environment mapping are provided to the virtual 3D eyeglasses in response to translation, scaling, and posture changes made to the head and face of the wearer in real-time.
    • 使用眼镜的2D图像数据提供使用虚拟3D眼镜创建尝试体验的方法。 使用一组用于眼镜的2D图像来构建虚拟3D眼镜。 虚拟3D眼镜配置在3D面部或头部模型上,并被模拟为穿着者适合佩戴。 用于眼镜的每组2D图像包括一对2D透镜图像,正面帧图像和至少一个侧框图像。 当实时检测到佩戴者的脸部和头部的运动时,3D面部或头部模型以及虚拟3D眼镜的配置和对准被相应地修改或调整。 响应于实时地对穿戴者的头部和脸部进行平移,缩放和姿势改变,将虚拟3D眼镜的部分,阴影创建和环境映射的特征提供给虚拟3D眼镜。
    • 9. 发明授权
    • Image-based object tracking system in 3D space using controller having multiple color clusters
    • 使用具有多个颜色集群的控制器的3D空间中的基于图像的对象跟踪系统
    • US09182813B2
    • 2015-11-10
    • US14093035
    • 2013-11-28
    • ULSEE INC.
    • Zhou YeSheng-Wen JengChih-Ming ChangHsin-Wei HsiaoYi-Chia HsuYing-Ko Lu
    • G06K9/00G06F3/01G06T7/20
    • G06F3/01G06T7/248G06T2207/10024G06T2207/30204
    • Image-based object tracking system includes at least a controller with two or more color clusters, an input button, a processing unit with a camera, an object tracking algorithm and a display. Camera is configured to capture images of the controller, the processing unit is connected to display to display processed image contents, the controller is directly interacting with displayed processed image content. The controller can have two or three color clusters located on a side surface thereof and two color clusters having concentric circular areas located at a top surface thereof, the color of the first color cluster can be the same as or different from the color of the third color cluster. An object tracking method with or without scale calibration is also provided, which includes color learning and color relearning, image capturing, separating and splitting of the controller and the background, object pairing procedure steps on the controller.
    • 基于图像的对象跟踪系统至少包括具有两个或多个颜色集群的控制器,输入按钮,具有相机的处理单元,对象跟踪算法和显示器。 相机被配置为捕获控制器的图像,处理单元被连接以显示以显示处理的图像内容,控制器直接与显示的处理的图像内容进行交互。 控制器可以具有位于其侧表面上的两个或三个颜色簇,并且具有位于其顶表面的同心圆形区域的两个颜色簇,第一颜色簇的颜色可以与第三颜色的颜色相同或不同于第三颜色的颜色 颜色集群。 还提供了一种具有或不具有标度校准的物体跟踪方法,包括颜色学习和颜色再学习,图像捕获,控制器的分离和分离以及背景,控制器上的对象配对过程步骤。
    • 10. 发明申请
    • Advertising System
    • US20210097579A1
    • 2021-04-01
    • US16589318
    • 2019-10-01
    • ULSee Inc.
    • Zhou Ye
    • G06Q30/02
    • An advertising is provided. The advertising system, characterized by comprising: an electronic device including: a lens exposed outside the electronic device; an recognition unit scanning the face of a use or a body of the user through the lens to obtain a user feature information; an online browsing unit including at least one online consumption behavior information; and an offline browsing unit including at least one offline consumption behavior information; and a data management server network connected to the electronic device, the user feature information, the online consumption behavior information, and the offline consumption behavior information being transmitted to the data management server, and the data management server including an analysis unit; wherein the analysis unit generates a user preference information according to the user feature information, the online consumption behavior information, and the offline consumption behavior information.