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    • 8. 发明申请
    • PERIODIC READING OF SYNCHRONIZATION CHANNEL FOR THE INTERNET OF THINGS
    • 定期阅读同步通道的互联网
    • WO2017039757A1
    • 2017-03-09
    • PCT/US2016/025735
    • 2016-04-01
    • INTEL IP CORPORATION
    • MATHAI, Bimil
    • H04W48/12
    • H04W48/16H04W48/12H04W56/0015Y02D70/1224Y02D70/1226Y02D70/1262Y02D70/142Y02D70/144Y02D70/146Y02D70/24
    • Technologies described herein provide reduced power consumption for Cellular Internet-of-Things (CIoT) devices. A CIoT timer value can be indicated by a wireless communication from a cellular base station to the CIoT device. The CIoT device can comprise a CIoT timer that tracks an amount of time elapsed since the CIoT device last decoded an Extended Coverage Synchronization Channel (EC-SCH). When the amount of time elapsed meets or exceeds the CIoT timer value, the CIoT device can again decode the EC-SCH. The CIoT timer value can indicate a minimum rate at which the CIoT device is expected to decode the EC-SCH, though the CIoT can elect to decode the EC-SCH more frequently. The cellular base station can determine when the CIoT device can be expected to use updated parameters that are included in the EC-SCH based on the CIoT timer value.
    • 本文所述的技术为蜂窝式物联网(CIoT)设备降低功耗。 可以通过从蜂窝基站到CIoT设备的无线通信来指示CIoT定时器值。 CIoT设备可以包括跟踪从CIoT设备上次解码扩展覆盖同步信道(EC-SCH)以来经过的时间量的CIoT定时器。 当经过的时间达到或超过CIoT定时器值时,CIoT设备可以再次解码EC-SCH。 CIoT定时器值可以指示CIoT设备解码EC-SCH的最小速率,尽管CIoT可以选择更频繁地解码EC-SCH。 蜂窝基站可以基于CIoT定时器值来确定CIoT设备何时可以使用包括在EC-SCH中的更新参数。
    • 10. 发明申请
    • NETWORK NODE AND METHOD PERFORMED THEREBY FOR CONTROLLING OPERATION OF A LOW POWER NODE
    • 用于控制低功率节点操作的网络节点和方法
    • WO2016096049A1
    • 2016-06-23
    • PCT/EP2014/078820
    • 2014-12-19
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
    • NORDSTRÖM, BjörnMANSSOUR, Jawad
    • H04W52/02
    • H04W52/0206G06F17/30H04W52/0232H04W52/0245H04W84/045Y02D70/00Y02D70/1226Y02D70/1242Y02D70/1262
    • A network node and a method performed thereby for controlling operation of a low power node are provided. The network node and the low power node are operable in a wireless communication network, wherein the low power node has at least two modes of operation, an active mode where the low power node is in full operation, and a passive mode where the low power node is discoverable by wireless devices in the network but not available for initial access or incoming handovers. The method comprises receiving (210) a measurement report from at least one wireless device, the measurement report comprising a measurement related to the low power node; and determining (220) the operation mode of the low power node based on the received measurement report. The method further comprises when the current operation mode of the low power node is passive and the determined operation mode is active, changing (230) the operation mode of the low power node to active mode.
    • 提供了一种用于控制低功率节点的操作的网络节点及其方法。 网络节点和低功率节点可在无线通信网络中操作,其中低功率节点具有至少两种工作模式,低功率节点处于完全运行的主动模式,以及低功率节点的低功率 节点可以由网络中的无线设备发现,但不可用于初始访问或传入切换。 该方法包括从至少一个无线设备接收(210)测量报告,所述测量报告包括与所述低功率节点相关的测量; 以及基于所接收的测量报告确定(220)所述低功率节点的操作模式。 该方法还包括当低功率节点的当前操作模式是被动的并且确定的操作模式是有效时,将低功率节点的操作模式改变(230)为活动模式。