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    • 3. 发明申请
    • SOCIAL CIRCLE AND RELATIONSHIP IDENTIFICATION
    • 社会循环与关系识别
    • US20160224871A1
    • 2016-08-04
    • US15025767
    • 2013-12-20
    • Oded KORENShahar TAITEYaniv GOLANTomer RIDERINTEL CORPORATION
    • Oded KorenShahar TaiteYaniv GolanTomer Rider
    • G06K9/62G06K9/18G06K9/00G06K9/32
    • G06K9/6284G06K9/00288G06K9/18G06K9/3258G06Q50/01
    • Systems, apparatus, and methods to determine relationships, group memberships, and social networks and circles automatically through an analysis of media content, such as photos or videos, and ascertaining the connections between individuals or groups. Embodiments include identifying individuals in photos with or without other people in different situations, and developing a context based on objects in the photo. The extracted context may be stored in a predefined ontology structure in a database and analyzed to determine relationships or group memberships. A database of automatically determined relationships may be analyzed in order to provide relationship recommendations, social advice, or to sup port law enforcement investigations. The database may be continuously updated with additional information provided by individuals or obtained through a secondary socal network that includes user media or social information.
    • 通过分析媒体内容(如照片或视频)以及确定个人或组之间的联系来自动确定关系,组成员身份和社交网络和圈子的系统,设备和方法。 实施例包括在不同情况下识别具有或不具有其他人的照片中的个人,以及基于照片中的对象来开发上下文。 提取的上下文可以存储在数据库中的预定义的本体结构中,并且被分析以确定关系或组成员资格。 可以分析自动确定的关系的数据库,以提供关系建议,社会咨询或支持执法调查。 可以使用由个人提供的附加信息或通过包括用户媒体或社交信息的次要网络获得的数据库来连续地更新数据库。
    • 5. 发明申请
    • TECHNOLOGIES FOR SENSOR ACTION VERIFICATION
    • 传感器动作验证技术
    • US20160087976A1
    • 2016-03-24
    • US14495059
    • 2014-09-24
    • David KaplanShahar TaiteAviv RonTomer Rider
    • David KaplanShahar TaiteAviv RonTomer Rider
    • H04L29/06
    • H04L63/0823H04L63/126H04W12/08
    • Technologies for sensor action verification include a local computing device to receive a request for the local computing device to perform a sensor action from a remote computing device. The local computing device verifies the received request to confirm that the remote computing device is authorized to request the local computing device to perform the sensor action and performs, by a sensor controller of the local computing device, the requested sensor action in response to verification of the received request. The sensor controller manages operation of one or more sensors of the local computing device. The local computing device transmits a response message to the remote computing device indicating whether the requested sensor action has been performed by the sensor controller of the local computing device.
    • 用于传感器动作验证的技术包括本地计算设备,用于接收对本地计算设备执行来自远程计算设备的传感器动作的请求。 本地计算设备验证所接收的请求以确认远程计算设备被授权请求本地计算设备执行传感器动作,并且由本地计算设备的传感器控制器执行所请求的传感器动作以响应于 收到的请求。 传感器控制器管理本地计算设备的一个或多个传感器的操作。 本地计算设备向远程计算设备发送响应消息,指示所请求的传感器动作是否已由本地计算设备的传感器控制器执行。
    • 7. 发明授权
    • Vehicle mirror adjustment
    • 车辆镜面调整
    • US09296338B2
    • 2016-03-29
    • US14188133
    • 2014-02-24
    • David KaplanTomer RiderAviv RonShahar Taite
    • David KaplanTomer RiderAviv RonShahar Taite
    • B60R22/00G02B5/08H04N7/18B60R1/00B60R1/02G06T7/00G06F3/01
    • B60R1/006B60R1/025G06F3/013G06T7/70G06T2207/30041G06T2207/30268
    • Technologies for mirror adjustment include an in-vehicle computing system of a vehicle to determine a position of a feature of a face of a driver of the vehicle in an image captured by a camera of the vehicle. The in-vehicle computing system determines a position of the feature of the face of the driver relative to a mirror of the vehicle based on configuration data of the vehicle and the captured image. The in-vehicle computing system further determines an angle between the feature of the face of the driver, the mirror, and an ideal normal of the mirror. The configuration data identifies a location of the camera relative to the mirror, and the ideal normal is an imaginary line normal to the mirror and extending therefrom when the mirror is positioned in a reference position. The in-vehicle computing system adjusts an orientation of the mirror based on the determined angle.
    • 用于镜面调整的技术包括车辆的车载计算系统,用于确定车辆的照相机拍摄的图像中的车辆驾驶员的脸部特征的位置。 车载计算系统基于车辆的配置数据和捕获的图像来确定驾驶员的面部相对于车辆的镜子的特征的位置。 车载计算系统进一步确定驾驶员的面部特征,镜子和镜子的理想法线之间的角度。 配置数据识别相机相对于镜子的位置,理想法线是反射镜垂直的假想线,并且当镜子位于参考位置时从该反射镜延伸出来。 车载计算系统基于所确定的角度来调整反射镜的方向。
    • 8. 发明申请
    • FACILITATING DYNAMIC DETECTION AND INTELLIGENT USE OF SEGMENTATION ON FLEXIBLE DISPLAY SCREENS
    • 促进灵活显示屏幕的动态检测和分类智能使用
    • US20160283014A1
    • 2016-09-29
    • US14668664
    • 2015-03-25
    • TOMER RIDERRAMON C. OLMODOR LEVYSHAHAR TAITE
    • TOMER RIDERRAMON C. OLMODOR LEVYSHAHAR TAITE
    • G06F3/041G06F3/0484G06F3/044
    • G06F1/1652G06F1/163G06F2203/04102G06F2203/04803
    • A mechanism is described for facilitating dynamic detection and intelligent use of segmentation on flexible display screens according to one embodiment. A method of embodiments, as described herein, includes detecting, via one or more touch sensors, alterations in current in and around one or more areas of a flexible display screen, where the alterations represent pressure being applied to cause at least one of bending, rolling, and curving of the flexible display screen at the one or more areas. The method may further include dividing the flexible display screen into a plurality of zones corresponding to the one or more areas, where the marking/dividing logic is further to mark a plurality of portions of the plurality of zones to serve as a plurality of segments. The method may further include facilitating displaying of contents via the plurality of segments of the flexible display screen.
    • 描述了根据一个实施例的用于促进灵活显示屏幕上的分割的动态检测和智能使用的机制。 如本文所述的实施例的方法包括经由一个或多个触摸传感器检测在柔性显示屏幕的一个或多个区域内和周围的电流的变化,其中所述变化表示施加的压力以引起弯曲, 在一个或多个区域上的柔性显示屏的滚动和弯曲。 该方法还可以包括将柔性显示屏划分成对应于一个或多个区域的多个区域,其中标记/分割逻辑进一步标记多个区域中的多个部分以用作多个区段。 该方法还可以包括便于经由柔性显示屏的多个段显示内容。