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    • 4. 发明申请
    • SHARING ACCESS WITH A DEVICE NEARBY
    • 与设备相邻的共享访问
    • WO2017019320A1
    • 2017-02-02
    • PCT/US2016/042377
    • 2016-07-15
    • MICROSOFT TECHNOLOGY LICENSING, LLC
    • JIANG, NaiyiZHU, RobertZHOU, QianCHIN, Ying N.
    • H04W4/02H04W88/04
    • H04L67/10H04L67/143H04W4/02H04W4/023H04W4/80H04W12/08H04W88/04
    • Concepts and technologies are described herein for providing automated network connection sharing. Techniques disclosed herein can initiate Internet connection sharing between a first computer and a second computer, wherein the Internet connection sharing enables the first computer to function as a host to provide Internet access to the second computer. If there is a break in the connection, a system determines if the second computer is in proximity to the first computer. If it is determined that the first computer is in proximity to the second computer, the techniques disclosed herein verify access rights. Once the access rights are verified, the system automatically establishes Internet connection sharing between the first computer and the second computer. The techniques disclosed herein enable access to a service for sharing a network connection without requiring user interaction.
    • 这里描述了概念和技术,用于提供自动化网络连接共享。 本文公开的技术可以启动第一计算机和第二计算机之间的因特网连接共享,其中因特网连接共享使得第一计算机能够用作主机以向第二计算机提供因特网访问。 如果连接中断,则系统确定第二台计算机是否位于第一台计算机附近。 如果确定第一计算机位于第二计算机附近,则本文公开的技术验证访问权限。 验证访问权限后,系统将自动建立第一台计算机和第二台计算机之间的Internet连接共享。 本文公开的技术使得能够访问用于共享网络连接的服务而不需要用户交互。
    • 5. 发明申请
    • PREVENT DATA DUPLICATION DURING FLASHING OF MOBILE DEVICES
    • 防止移动设备闪烁期间的数据重复
    • WO2017172671A1
    • 2017-10-05
    • PCT/US2017/024403
    • 2017-03-28
    • MICROSOFT TECHNOLOGY LICENSING, LLC
    • ZHU, Robert YuCHIN, Ying N.ZHANG, DejunWANG, BinBAHADUR, SatyendraCHEN, XuejunZHENG, HaifengZHAO, Pengxiang
    • G06F9/445
    • G06F8/61
    • A workbench identifies a plurality of mobile devices that are ready to be flashed and which are tethered to the workbench. The workbench also accesses one or more common payload packets to be flashed to each of the mobile devices from volatile memory of the workbench computing system, as well as one or more uncommon packets that are to be selectively flashed to only a subset of the plurality of mobile devices during the flashing session. Upon accessing and/or formatting the packets, the workbench computing system transmits the common payload packet(s) to the plurality of ready to be flashed mobile devices concurrently, while refraining from making or simultaneously storing a separate copy of the one or more common payload packets in the volatile storage for each of the plurality of mobile devices during the flashing session.
    • 工作台标识准备好闪光并且被连接到工作台的多个移动设备。 工作台还访问要从工作台计算系统的易失性存储器闪存到每个移动设备的一个或多个公共有效载荷分组以及一个或多个将被选择性地闪烁到仅仅多个 移动设备在闪光期间。 在访问和/或格式化分组时,工作台计算系统同时将公共有效载荷分组发送到多个准备好的闪烁移动设备,同时避免制作或同时存储一个或多个公共有效载荷的单独副本 在闪光会话期间,用于多个移动设备中的每一个的易失性存储器中的分组
    • 6. 发明申请
    • HIGH AVAILABILITY AND ENERGY-EFFICIENT WATCHDOG TIMER
    • 高可用性和高能效的看门狗定时器
    • WO2017007605A1
    • 2017-01-12
    • PCT/US2016/038866
    • 2016-06-23
    • MICROSOFT TECHNOLOGY LICENSING, LLC
    • WANG, BinZHU, Robert YuWU, QipengZHANG, DejunZHAO, PengxiangCHIN, Ying N.
    • G06F11/07G06F1/32
    • G06F11/0757G06F1/24G06F1/3203G06F11/0736
    • Examples for an intelligent watchdog timer for a computing device are described herein. The watchdog timer operates a watchdog counter that repetitively counts a watchdog count interval from an initial value to a final value. The watchdog counter is continually reset if the device is functioning properly. If the watchdog timer is allowed to reach a final count value, a processor reset is initiated. Several components operate to detect the current mode of operation of the processor or an operating system, and predict, in part based on user context, when different power states may occur. The components also forecast when the watchdog timer is scheduled to reach the final count value. Based on the forecasts of when the watchdog timer will reach the final count value and the predictions of future power states of the processor or operating system, the watchdog counter is selectively disabled or reset.
    • 这里描述了用于计算设备的智能看门狗定时器的示例。 看门狗定时器操作看门狗计数器,将看门狗计数间隔从初始值重复计数到最终值。 如果设备运行正常,看门狗计数器将不断复位。 如果允许看门狗定时器达到最终计数值,则启动处理器复位。 几个组件用于检测处理器或操作系统的当前操作模式,并且部分地基于用户上下文来预测当发生不同的功率状态时。 组件还可以预测看门狗定时器何时达到最终计数值。 根据对看门狗定时器何时达到最终计数值以及处理器或操作系统未来电源状态预测的预测,看门狗计数器被选择性地禁用或复位。