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    • 2. 发明申请
    • Wireless Device, Radio Network Node and Methods for Managing Measurement of Reference Signals
    • 无线设备,无线网络节点和管理参考信号测量的方法
    • US20160353338A1
    • 2016-12-01
    • US15117587
    • 2014-02-14
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
    • Badawi YamineAngelo CentonzaOumer Teyeb
    • H04W36/00H04W48/12H04W36/32
    • H04W36/0061H04W36/32H04W48/04H04W48/12H04W84/045
    • A wireless device (120) and a method therein for managing a measurement of a strength of a reference signal as well as a radio network node (110) and a method therein for enabling the wireless device (120) to manage the measurement of the strength of the reference signal are disclosed. The wireless device (120) of a first cell (101) receives, from the radio network node (110), an indication relating to a property associated with an identity of a second cell (102) neighbouring to the first cell (101). The wireless device (120) receives the identity of the second cell (102). Moreover, the wireless device (120) measures the strength of the reference signal identified by the identity of the second cell (102), only when the property indicates that the wireless device (120) is to perform the measurement on the reference signal. Corresponding computer programs and computer program products are also disclosed.
    • 一种用于管理参考信号的强度以及无线电网络节点(110)的测量的无线设备(120)及其方法,其中使无线设备(120)能够管理强度的测量 的参考信号。 第一小区(101)的无线设备(120)从无线电网络节点(110)接收与与第一小区(101)相邻的第二小区(102)的身份相关联的属性的指示。 无线设备(120)接收第二小区(102)的身份。 此外,无线设备(120)仅当该属性指示无线设备(120)要对参考信号执行测量时,测量由第二小区(102)的身份识别的参考信号的强度。 还公开了相应的计算机程序和计算机程序产品。
    • 6. 发明申请
    • Controlling Dispatch of Radio Coverage Drones
    • US20230047909A1
    • 2023-02-16
    • US17786221
    • 2019-12-19
    • Telefonaktiebolaget LM Ericsson (publ)
    • Badawi Yamine
    • H04B7/185H04W24/02H04W24/04H04W48/16
    • A method for dispatching radio coverage drones to a geographical area of a failing node in a radio network, wherein the radio coverages drones are configured to re-establish operability of the failing node is disclosed. The method comprises steps being performed by a network node of generating (102) a radio coverage map, wherein the generated radio coverage map covers the geographical area of the failing node and geographical areas of adjacent nodes, identifies at least one mobile communication device having radio coverage from at least one of the adjacent nodes, and defines a size of the geographical area of the failing node, dynamically calibrating (103) the defined size of the geographical area of the failing node of the dynamically generated radio coverage map by: calculating (103a) a first distance between the identified mobile communication device and a selected one of the adjacent nodes, wherein the identified mobile communication device has coverage from the selected adjacent node while being geographically closer to the failing node than to the selected adjacent node, deducing (103b) a second distance between the failing node and the selected adjacent node, determining (103d) the actual size of the geographical area of the failing node based on the second and the first distance, and determining (104) a number of radio coverage drones to be dispatched to the geographical area of the failing node, wherein the number of radio coverage drones is based on to the actual size of the geographical area of the failing node. Corresponding computer program product, arrangement, network node, and system are also disclosed.