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    • 31. 发明申请
    • USER GESTURE DRIVEN AVATAR APPARATUS AND METHOD
    • 用户手册驱动的AVATAR装置和方法
    • WO2016045005A1
    • 2016-03-31
    • PCT/CN2014/087248
    • 2014-09-24
    • INTEL CORPORATIONLI, QiangTONG, XiaofengDU, YangzhouLI, WenlongOZER, Caleb J.LORENZO, Jose Elmer S.
    • LI, QiangTONG, XiaofengDU, YangzhouLI, WenlongOZER, Caleb J.LORENZO, Jose Elmer S.
    • G06T13/40
    • G06T13/40A63F13/2145A63F13/428A63F2300/6607G06F3/011G06F3/04883G06T15/005G06T15/503
    • Apparatuses, methods and storage medium associated with animating and rendering an avatar are disclosed herein. In embodiments, the apparatus may include a gesture tracker and an animation engine. The gesture tracker may be configured to detect and track a user gesture that corresponds to a canned facial expression, the user gesture including a duration component corresponding to a duration the canned facial expression is to be animated. Further, the gesture tracker may be configured to respond to a detection and tracking of the user gesture, and output one or more animation messages that describe the detected/tracked user gesture or identify the canned facial expression, and the duration. The animation engine may be configured to receive the one or more animation messages, and drive an avatar model, in accordance with the one or more animation messages, to animate the avatar with animation of the canned facial expressions for the duration. Other embodiments may be described and/or claimed.
    • 本文公开了与动画和呈现化身相关联的装置,方法和存储介质。 在实施例中,设备可以包括手势跟踪器和动画引擎。 手势跟踪器可以被配置为检测和跟踪对应于罐头面部表情的用户手势,所述用户手势包括对应于罐头面部表情将被动画化的持续时间的持续时间分量。 此外,手势跟踪器可以被配置为响应用户手势的检测和跟踪,并且输出描述所检测/跟踪的用户手势或识别罐头面部表情以及持续时间的一个或多个动画消息。 动画引擎可以被配置为接收一个或多个动画消息,并且根据一个或多个动画消息来驱动头像模型,以在持续时间内用罐头的面部表情的动画来动画化身。 可以描述和/或要求保护其他实施例。
    • 34. 发明申请
    • APPARATUS AND METHOD FOR RECOMMENDING COURSES
    • 装置和方法建议课程
    • WO2012135971A1
    • 2012-10-11
    • PCT/CN2011/000576
    • 2011-04-02
    • TELEFONAKTIEBOLAGET L M ERICSON (PUBL)MAI, XinglongHU, HuiLI, QiangLIU, Qingyan
    • MAI, XinglongHU, HuiLI, QiangLIU, Qingyan
    • G09B5/00G09B7/00G06F17/00
    • G06Q50/2053G06Q10/10G06Q10/103G06Q50/205G09B5/00G09B7/00
    • An apparatus for recommending courses (200) comprises: a first receiver (210) adapted to receive a course request from a user client; a first collector (220) adapted to collect user context related to the user client; a first calculator (230) adapted to calculate relevance between the user context and each course stored in a storage device; and a first recommender (240) adapted to recommend courses on the basis of the calculated relevance to the user client. A direct and efficient method for recommending courses based on user context which has a strong impact on user experience is provided. According to the method, user information such as user profile, user behaviors, or past learning activities is not indispensable for the recommendation, and thus cold start problems happening when no user information is available can be solved. The user does not need to input query term(s) when requesting the recommendation, and the recommendation can be performed whenever and wherever the user requests courses.
    • 一种用于推荐课程(200)的装置包括:适于从用户客户端接收课程请求的第一接收机(210) 适于收集与所述用户客户端相关的用户上下文的第一收集器(220) 适于计算用户上下文和存储在存储设备中的每个课程之间的相关性的第一计算器(230) 以及适于基于所计算的与所述用户客户端的相关性来推荐课程的第一推荐器(240)。 提供了一种基于用户上下文推荐课程的直接有效的方法,对用户体验有很大的影响。 根据该方法,用户信息(例如用户简档,用户行为或过去的学习活动)对于推荐不是必不可少的,因此可以解决当没有用户信息可用时发生的冷启动问题。 用户在请求建议时不需要输入查询词,并且可以在用户请求课程的任何时间和地点执行推荐。
    • 35. 发明申请
    • METHOD OF FACIAL LANDMARK DETECTION
    • 方法地名检测方法
    • WO2012129727A1
    • 2012-10-04
    • PCT/CN2011/000553
    • 2011-03-31
    • INTEL CORPORATIONLIU, AngDU, YangzhouWANG, TaoLI, JianguoLI, QiangZHANG, Yimin
    • LIU, AngDU, YangzhouWANG, TaoLI, JianguoLI, QiangZHANG, Yimin
    • G06K9/00
    • G06K9/00248G06K9/00281G06K9/6209
    • Detecting facial landmarks in a face detected in an image may be performed by first cropping a face rectangle region of the detected face in the image and generating an integral image based at least in part on the face rectangle region. Next, a cascade classifier may be executed for each facial landmark of the face rectangle region to produce one response image for each facial landmark based at least in part on the integral image. A plurality of Active Shape Model (ASM) initializations may be set up. ASM searching may be performed for each of the ASM initializations based at least in part on the response images, each ASM search resulting in a search result having a cost. Finally, a search result of the ASM searches having a lowest cost function may be selected, the selected search result indicating locations of the facial landmarks in the image.
    • 可以通过首先裁剪图像中检测到的面部的面部矩形区域并且至少部分地基于面部矩形区域来生成整体图像来检测在图像中检测到的面部中的面部界标。 接下来,可以对面部矩形区域的每个面部标记执行级联分类器,以至少部分地基于积分图像来为每个面部标记产生一个响应图像。 可以设置多个活动形状模型(ASM)初始化。 可以至少部分地基于响应图像来对每个ASM初始化执行ASM搜索,每个ASM搜索导致搜索结果具有成本。 最后,可以选择具有最低成本函数的ASM搜索的搜索结果,所选择的搜索结果指示图像中的面部地标的位置。
    • 37. 发明申请
    • A MULTI-CORE PROCESSOR SUPPORTING REAL-TIME 3D IMAGE RENDERING ON AN AUTOSTEREOSCOPIC DISPLAY
    • 支持自动显示显示的实时3D图像渲染的多核处理器
    • WO2011120228A1
    • 2011-10-06
    • PCT/CN2010/071493
    • 2010-04-01
    • INTEL CORPORATIONLI, ChangchengDU, YangzhouLI, QiangZHANG, Yimin
    • LI, ChangchengDU, YangzhouLI, QiangZHANG, Yimin
    • H04N13/04
    • H04N13/128H04N13/111H04N13/122H04N13/139
    • A multi-core processor system may support 3D image rendering on an autostereoscopic display. The 3D image rendering includes pre-processing of depth map and 3D image wrapping tasks. The pre-processing of depth map may include a foreground prior depth image smoothing technique, which may perform a depth gradient detection and a smoothing task. The depth gradient detection task may detect areas with large depth gradient and the smoothing task may transform the large depth gradient into a linearly changing shape using low-strength, low-pass filtering techniques. The 3D image wrapping may include vectorizing the code for 3D image wrapping of row pixels using an efficient single instruction multiple data (SIMD) technique. After vectorizing, an API such as OpenMP may be used to parallelize the 3D image wrapping procedure. The 3D image wrapping using OpenMP may be performed on rows of the 3D image and on images of the multiple view images.
    • 多核处理器系统可以支持自动立体显示器上的3D图像渲染。 3D图像渲染包括深度图和3D图像包装任务的预处理。 深度图的预处理可以包括前景深度图像平滑技术,其可以执行深度梯度检测和平滑任务。 深度梯度检测任务可以检测具有较大深度梯度的区域,平滑任务可以使用低强度低通滤波技术将大深度梯度变换为线性变化的形状。 3D图像包装可以包括使用有效的单指令多数据(SIMD)技术来矢量化用于行像素的3D图像包围的代码。 在矢量化之后,可以使用诸如OpenMP的API来并行化3D图像包装过程。 使用OpenMP的3D图像包装可以在3D图像的行和多个视图图像的图像上执行。