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    • 2. 发明授权
    • Network aware content pre-delivery over a radio access network
    • 通过无线电接入网络预发送网络感知内容
    • US08605640B2
    • 2013-12-10
    • US13116471
    • 2011-05-26
    • Arda AksuYee Sin Chan
    • Arda AksuYee Sin Chan
    • H04H20/71
    • H04W4/06H04L12/189H04W4/18H04W28/0231H04W28/0268H04W72/005H04W76/40
    • Efficient delivery of subscription content over a wireless network is described herein. In one implementation a device may receive load information regarding network traffic load at radio interfaces for a cellular network. The device may maintain subscription information relating to subscribers that have subscribed to receive content items and to availability of the content items. The device may determine whether a quantity of mobile devices, that are attached to the base station and are associated with subscribers that have subscribed to the first content item, is above a threshold. Finally, the device may transmit, when it is determined that the quantity of mobile devices is above the threshold, the first content item to the quantity of mobile devices as a multicast transmission over a radio interface associated with the base station.
    • 这里描述了通过无线网络有效地递送订阅内容。 在一个实现中,设备可以接收关于蜂窝网络的无线电接口处的网络业务负载的负载信息。 该设备可以维护与订阅接收内容项目的订户和内容项目的可用性有关的订阅信息。 设备可以确定附加到基站并且与订阅了第一内容项目的订户相关联的移动设备的数量是否高于阈值。 最后,当确定移动设备的数量高于阈值时,设备可以将第一内容项目发送到与基站相关联的无线电接口上的作为多播传输的移动设备的数量。
    • 5. 发明授权
    • Machine-to-machine communications over fixed wireless networks
    • 通过固定无线网络进行机对机通信
    • US08416741B2
    • 2013-04-09
    • US12876631
    • 2010-09-07
    • Yee Sin ChanJin YangPingping Zong
    • Yee Sin ChanJin YangPingping Zong
    • H04W4/00H04W72/00
    • H04W88/06H04L41/082H04W8/22H04W24/00H04W28/06H04W72/12H04W88/08H04W92/18
    • One or more devices determine uplink signal strength for a machine-to-machine (M2M) device using a wireless access network. The one or more devices identify a default uplink transmission mode that requires the M2M device to employ transmission time interval (TTI) bundling, when the uplink signal strength is below a particular threshold, and identify a default uplink transmission mode that requires the M2M device to not employ TTI bundling, when the uplink signal strength is not below the particular threshold. The one or more devices store, in a memory, the default transmission mode for the M2M device. The one or more devices retrieve, from the memory and during a wake-up time window associated with the M2M device, the default transmission mode for the M2M device and construct, for the M2M device, an uplink scheduling grant based on the stored default transmission mode.
    • 一个或多个设备使用无线接入网络确定机器对机器(M2M)设备的上行链路信号强度。 一个或多个设备识别默认的上行链路传输模式,当上行链路信号强度低于特定阈值时,需要M2M设备采用传输时间间隔(TTI)绑定,并且识别需要M2M设备的默认上行链路传输模式 当上行链路信号强度不低于特定阈值时,不采用TTI绑定。 一个或多个设备在存储器中存储用于M2M设备的默认传输模式。 一个或多个设备从存储器中以及在与M2M设备相关联的唤醒时间窗口期间检索M2M设备的默认传输模式,并针对M2M设备构建基于所存储的默认传输的上行链路调度许可 模式。
    • 6. 发明授权
    • Dynamic machine-to-machine communications and scheduling
    • 动态机对机通信和调度
    • US08345546B2
    • 2013-01-01
    • US12834985
    • 2010-07-13
    • Yee Sin ChanJin Yang
    • Yee Sin ChanJin Yang
    • G01R31/08
    • H04W4/70
    • A method may include obtaining traffic loading and resource utilization information associated with a network for the network time domain; obtaining machine-to-machine resource requirements for machine-to-machine tasks using the network; receiving a target resource utilization value indicative of a network resource limit for the network time domain; calculating a probability for assigning each machine-to-machine task to the network time domain, wherein the probability is based on a difference between the target resource utilization value and the traffic loading and resource utilization associated with the network; calculating a probability density function based on an independent and identically distributed random variable; generating a schedule of execution of the machine-to-machine tasks within the network time domain based on the probabilities associated with the machine-to-machine tasks and the probability density function; and providing the schedule of execution of the machine-to-machine tasks.
    • 一种方法可以包括获得与网络相关联的用于网络时域的业务负载和资源利用信息; 使用网络获取机器到机器任务的机器对机器资源要求; 接收指示网络时域的网络资源限制的目标资源利用值; 计算将每个机器对机器任务分配给网络时域的概率,其中概率基于目标资源利用价值与与网络相关联的业务负载和资源利用之间的差异; 基于独立且相同分布的随机变量计算概率密度函数; 基于与机器对机器任务和概率密度函数相关联的概率,在网络时域内生成执行机器到机器任务的时间表; 并提供执行机器到机器任务的时间表。
    • 9. 发明申请
    • PACKET BASED LOCATION PROVISIONING IN WIRELESS NETWORKS
    • 基于分组的无线网络中的位置提供
    • US20110149756A1
    • 2011-06-23
    • US12645899
    • 2009-12-23
    • Yee Sin ChanJin YangKamlesh S. KamdarJay J. Lee
    • Yee Sin ChanJin YangKamlesh S. KamdarJay J. Lee
    • H04W24/00
    • G01S5/06G01S5/14H04W64/00
    • A system may include a plurality of wireless devices, each wireless device including a time source and configured to selectively communicate with at least one other of the plurality of wireless devices by way of a packet-based time precision protocol. The plurality of wireless devices may include a first wireless device and a second wireless device, the first wireless device being configured to determine whether the first wireless device and the second wireless device are in selective communication over a single-hop wireless link; determine a one-way delay over the single-hop wireless link by way of at least one packed-based time precision protocol message; and calculate a distance measurement between the first wireless device and the second wireless device based at least in part on the one-way delay.
    • 系统可以包括多个无线设备,每个无线设备包括时间源并且被配置为通过基于分组的时间精度协议选择性地与多个无线设备中的至少一个通信。 多个无线设备可以包括第一无线设备和第二无线设备,第一无线设备被配置为确定第一无线设备和第二无线设备是否通过单跳无线链路进行选择性通信; 通过至少一个基于打包的时间精度协议消息来确定单跳无线链路上的单向延迟; 以及至少部分地基于所述单向延迟来计算所述第一无线设备和所述第二无线设备之间的距离测量。