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    • 1. 发明授权
    • User plane-based location services (LCS) system, method and apparatus
    • 基于用户平面的定位服务(LCS)系统,方法和设备
    • US08023958B2
    • 2011-09-20
    • US10792062
    • 2004-03-02
    • Jun WangLeonid SheynblatParag AgahseRandall GellensRaymond Hsu
    • Jun WangLeonid SheynblatParag AgahseRandall GellensRaymond Hsu
    • H04W4/00
    • H04W64/00H04W4/02H04W12/04H04W12/06
    • A system, method and apparatus for providing location services whereby location determination and location disclosure are treated as separate and independent processes. Location determination may be performed (as necessary) via a first set of network entities to obtain location information for a mobile station. The location information may be cached for subsequent disclosure to any number of applications. Location disclosure may be performed (when requested) via a second set of network entities to provide the location information. Location determination may utilize a first security procedure for authentication and authorization and to obtain a first session key used for location determination. Location disclosure may utilize a second security procedure for authentication and authorization and to obtain a second session key used for location disclosure. For a roaming mobile station, location determination may be performed via a serving network and location disclosure may be performed via a home network.
    • 一种用于提供位置服务的系统,方法和装置,其中位置确定和位置公开被视为单独和独立的过程。 可以经由第一组网络实体来执行位置确定(根据需要),以获得移动台的位置信息。 可以缓存位置信息以便随后公开任何数量的应用。 可以经由第二组网络实体(当请求时)执行位置公开以提供位置信息。 位置确定可以利用用于认证和授权的第一安全过程,并且获得用于位置确定的第一会话密钥。 位置公开可以利用用于认证和授权的第二安全过程,并且获得用于位置公开的第二会话密钥。 对于漫游移动站,可以经由服务网络执行位置确定,并且可以经由归属网络来执行位置公开。
    • 5. 发明授权
    • Controlling power consumption of a mobile device based on gesture recognition
    • 基于手势识别控制移动设备的功耗
    • US09086875B2
    • 2015-07-21
    • US12792600
    • 2010-06-02
    • Newfel HarratLeonid Sheynblat
    • Newfel HarratLeonid Sheynblat
    • G06F1/32G06F3/01H04W52/02
    • G06F1/3203G06F1/3293G06F3/017H04M2250/12H04W52/0254H04W52/0293Y02D10/122Y02D70/142Y02D70/144Y02D70/164Y02D70/20
    • In an embodiment, a mobile device includes a sensor processor system, an application processor system and a power management controller that controls power being applied to the application processor system. The sensor processor system monitors sensors connected to the mobile device. The sensor processor system detects a pre-defined gestures and an environmental condition or event based on the monitoring. The pre-defined gesture corresponds to one or more actions initiated by a user of the mobile device (e.g., the user jogs with the mobile device, places the mobile device in his/her pocket or backpack, etc.). The sensor processor system selects a power profile to be applied to the application processor system based on the detection, and instructs the power management controller to apply the selected power profile to the application processor system.
    • 在一个实施例中,移动设备包括传感器处理器系统,应用处理器系统和控制施加到应用处理器系统的功率的电源管理控制器。 传感器处理器系统监测连接到移动设备的传感器。 传感器处理器系统基于监视来检测预定义的手势和环境状况或事件。 预定义的手势对应于移动设备的用户发起的一个或多个动作(例如,用户使用移动设备进行慢跑,将移动设备放置在他/她的口袋或背包等中)。 传感器处理器系统基于检测选择应用于应用处理器系统的功率分布,并指示电源管理控制器将所选择的功率配置文件应用于应用处理器系统。
    • 7. 发明授权
    • Sensor-based orientation system
    • 基于传感器的定向系统
    • US08910522B2
    • 2014-12-16
    • US13178724
    • 2011-07-08
    • Leonid Sheynblat
    • Leonid Sheynblat
    • G01P3/04G01C21/16G01P15/18
    • G01C21/16G01P15/18
    • A method for measuring positional changes of an object, including rotation about any or all of three axes, using linear accelerometers. There is disclosed a method of using a linear accelerometer to integrate two 3D linear accelerometers in order to measure and supply for further use six-dimensional information, that is, translation in three dimensions and rotation about three axes. Two linear accelerometer sensors are used to determine all but rotation about an imaginary axis between the accelerometers. Output from a third accelerometer may be used to generate the data needed to determine rotation about the imaginary axis. The need for a gyroscope for detecting changes in heading (i.e., yaw or azimuth) may therefore be avoided.
    • 一种用于使用线性加速度计测量物体的位置变化的方法,包括围绕任何或全部三个轴的旋转。 公开了一种使用线性加速度计来集成两个3D线性加速度计的方法,以便测量和供应以进一步使用六维信息,即三维平移和围绕三个轴的旋转。 两个线性加速度计传感器用于确定围绕加速度计之间的虚轴的所有旋转。 可以使用来自第三加速度计的输出来产生确定围绕虚轴的旋转所需的数据。 因此,可以避免需要用于检测航向变化的陀螺仪(即偏航或方位角)。
    • 10. 发明申请
    • INTEGRATING SENSATION FUNCTIONALITIES INTO SOCIAL NETWORKING SERVICES AND APPLICATIONS
    • 将感染功能集成到社会网络服务和应用中
    • US20130227409A1
    • 2013-08-29
    • US13594434
    • 2012-08-24
    • Saumitra Mohan DASVinay SridharaLeonid Sheynblat
    • Saumitra Mohan DASVinay SridharaLeonid Sheynblat
    • H04L29/06
    • H04L65/403G06F3/016G06F3/0488G06Q50/01H04L51/32
    • Methods, apparatuses, systems, and computer-readable media for integrating sensation functionalities into social networking services and/or applications are presented. According to one or more aspects, a computing device may receive a status update associated with a social networking service, and the status update may include haptic data. Subsequently, the computing device may cause haptic feedback to be provided to at least one user of the social networking service, based at least in part on the haptic data and the at least one user's relationship with a sender of the status update within the social networking service. In at least one arrangement, first haptic feedback is provided to the user if the user is within a first group of users, and second haptic feedback different from the first haptic feedback is provided to the user if the user is within a second group of users different from the first group of users.
    • 提出了将感觉功能集成到社交网络服务和/或应用中的方法,装置,系统和计算机可读介质。 根据一个或多个方面,计算设备可以接收与社交网络服务相关联的状态更新,并且状态更新可以包括触觉数据。 随后,计算设备可以至少部分地基于触觉数据和至少一个用户与社交网络内的状态更新的发送者的关系来将触觉反馈提供给社交网络服务的至少一个用户 服务。 在至少一个布置中,如果用户在第一组用户内,则向用户提供第一触觉反馈,并且如果用户位于第二组用户内,则向用户提供与第一触觉反馈不同的第二触觉反馈 与第一组用户不同。