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    • 1. 发明申请
    • IMPROVING ACCURACY WHEN DETERMINING POSITIONS IN A WIRELESS NETWORK
    • 在确定无线网络中的位置时提高准确度
    • WO2016089266A1
    • 2016-06-09
    • PCT/SE2014/051451
    • 2014-12-04
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
    • HENRIKSSON, DanielAHLSTRÖM, TobiasBALCK, KennethDREVÖ, Markus
    • G01S5/14G01S5/02G01S19/45H04W64/00
    • G01S5/14G01S5/021G01S5/0242G01S5/0252G01S13/765G01S19/45H04W64/00H04W64/003
    • Disclosed is a method performed by a position calculation node(160) in a wireless communication network (100). The node (160) is arranged for improving accuracy when determining positions in the wireless communication network. The method comprises obtaining a signal transport time value for each of a plurality of different geographical UE positions (UE1, UE2, UE3), wherein the respective signal transport time value relates to the time it takes for a radio signal to travel between a first base station and one of the plurality of UE positions. The method further comprises obtaining a geographical position value for each of the plurality of different geographical UE positions, the position values being independent of the signal transport time values,and determining an actual geographical position for the first base station, based on the obtained signal transport time values, the obtained position values and a predefined geographical position for the first base station.
    • 公开了一种由无线通信网络(100)中的位置计算节点(160)执行的方法。 节点(160)被布置用于在确定无线通信网络中的位置时提高精度。 该方法包括获得多个不同地理UE位置(UE1,UE2,UE3)中的每一个的信号传输时间值,其中相应的信号传输时间值与无线电信号在第一基站 站和多个UE位置中的一个。 该方法还包括获得多个不同地理UE位置中的每一个的地理位置值,位置值独立于信号传输时间值,并且基于获得的信号传输来确定第一基站的实际地理位置 时间值,所获得的位置值和第一基站的预定义的地理位置。
    • 3. 发明公开
    • METHODS, WIRELESS COMMUNICATION NETWORKS AND NETWORK NODES FOR RECOVERING A PUBLIC WARNING SYSTEM
    • 方法,无线通信网络和网络节点恢复公共预警系统
    • EP3000246A1
    • 2016-03-30
    • EP14728683.5
    • 2014-05-06
    • Telefonaktiebolaget LM Ericsson (publ)
    • DREVÖ, MarkusBALCK, KennethOLSSON, Lars-BertilISRAELSSON, Martin
    • H04W4/22
    • H04W4/22H04L12/189H04L12/1895H04W4/021H04W4/06H04W4/90
    • A method is described performed by a wireless communication network for recovering a public warning system when a radio network node comprising radio circuitry for communication with served user equipments, UEs, has been newly added or restarted in the network. The method comprises sending, by the radio network node to a core network node, information indicating that the radio network node has been restarted or added to the network, the information including one or more tracking area identifiers, TAI, identifying one or more tracking areas that the radio network node supports and/or a radio network node identifier, ID, identifying the radio network node in the communication network, and, in case the radio network node ID is sent but not the one or more TAIs, acquiring, by the core network node the one or more TAIs based on the received radio network node ID.
    • 一种方法,所述进行通过无线通信网络用于当包含无线电电路用于与用户设备通信的无线网络节点服务中,UE已经被新添加或网络中的重新开始回收公共警报系统。 该方法包括:发送由所述无线网络节点的核心网络节点的信息,表示没有所述无线电网络节点已经重新启动或添加到网络,该信息包括一个或多个追踪区域标识符,TAI,识别一个或多个跟踪区域 做了无线电网络节点支持和/或无线电网络节点标识符,ID,识别通信网络中的无线电网络节点,并且,在壳体无线电网络节点ID被发送但未被所述一种或多种的TAI,获取,由 核心网络节点基于接收到的无线电网络节点ID的一个或多个的TAI。
    • 8. 发明公开
    • IMPROVING ACCURACY WHEN DETERMINING POSITIONS IN A WIRELESS NETWORK
    • 在确定无线网络中的位置时提高准确性
    • EP3227710A1
    • 2017-10-11
    • EP14907446.0
    • 2014-12-04
    • Telefonaktiebolaget LM Ericsson (publ)
    • HENRIKSSON, DanielAHLSTRÖM, TobiasBALCK, KennethDREVÖ, Markus
    • G01S5/14G01S5/02G01S19/45H04W64/00
    • G01S5/14G01S5/021G01S5/0242G01S5/0252G01S13/765G01S19/45H04W64/00H04W64/003
    • Disclosed is a method performed by a position calculation node (160) in a wireless communication network (100). The node (160) is arranged for improving accuracy when determining positions in the wireless communication network. The method comprises obtaining a signal transport time value for each of a plurality of different geographical UE positions (UE1, UE2, UE3), wherein the respective signal transport time value relates to the time it takes for a radio signal to travel between a first base station and one of the plurality of UE positions. The method further comprises obtaining a geographical position value for each of the plurality of different geo-graphical UE positions, the position values being independent of the signal transport time values, and determining an actual geographical position for the first base station, based on the obtained signal transport time values, the obtained position values and a predefined geographical position for the first base station.
    • 公开了一种由无线通信网络(100)中的位置计算节点(160)执行的方法。 节点(160)被布置用于在确定无线通信网络中的位置时提高准确度。 该方法包括获得多个不同地理UE位置(UE1,UE2,UE3)中的每一个的信号传输时间值,其中相应的信号传输时间值与无线电信号在第一基站 站和多个UE位置之一。 该方法进一步包括获得多个不同地理UE位置中的每一个的地理位置值,位置值独立于信号传输时间值,并且基于获得的信号传输确定第一基站的实际地理位置 时间值,获得的位置值和第一基站的预定义的地理位置。
    • 9. 发明授权
    • CHANNEL ALLOCATION AND RELEASE FOR PACKET DATA SERVICES
    • 信道分配-AUSLÖSUNG用于分组数据服务
    • EP1212903B1
    • 2009-02-11
    • EP00966637.1
    • 2000-09-18
    • TELEFONAKTIEBOLAGET LM ERICSSON (publ)
    • HJELM, SusanneBALCK, Kenneth
    • H04W4/00
    • H04W28/26
    • A telecommunications system (18) comprises a control node (24) and a base station node (22). The control node (24) maintains a first list (42) of idle radio channels which is consulted in order to obtain channels for a first type of telecommunications service. A second list (56) of idle radio channels is maintained for a specialized telecommunications service, the idle radio channels of the second list being radio channels which are unallocated with respect to the specialized telecommunications service but yet activated (e.g., having an established transmission path and synchronization). The second list of idle radio channels is initially consulted in order to obtain channels for the specialized telecommunications service. If no channels are available for the specialized telecommunications service on the second list, idle channels from the first list are adapted and utilized for the specialized telecommunications service. The specialized telecommunications service preferably involves packet data transfer (e.g., GPRS). As one aspect of the invention, any potential capacity problem is addressed by providing timers for channels on the second list. There is one timer corresponding to each channel on the second list, which timer is started when there is no more traffic ongoing on that channel. The channel remains activated with respect to the specialized telecommunications service, which makes fast specialized service access possible for all such users in that cell. As long as the timer has not expired, the channel on the second list is available for specialized service traffic without any new activation. However, when the timer expires, the channel is released and put on the first list, where it is once again available for all traffic. The timer values can be dynamically adjusted or varied, e.g., depending on processor load or traffic load at a cell.