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    • 62. 发明申请
    • DYNAMIC RESOURCE SELECTION TO REDUCE INTERFERENCE THAT RESULTS FROM DIRECT DEVICE TO DEVICE COMMUNICATIONS
    • 动态资源选择可以减少从直接设备到设备通信的干扰
    • WO2013190452A2
    • 2013-12-27
    • PCT/IB2013/054965
    • 2013-06-17
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)
    • DIMOU, KonstantinosFODOR, GaborCAVALCANTI, Francisco Rodrigo P.MACIEL, Tarcísío
    • H04W76/14H04W64/00H04W72/082
    • Systems and methods are disclosed for selecting resources for direct device to device (D2D) communications in a cellular communication, network. in one embodiment, a downlink resource is selected as a resource tor a direct D2D communication link between a first wireless device and a second wireless device if a base station serving each of the first and second wireless devices is equipped with an interference cancellation receiver and both the first and second wireless devices are less than a predefined threshold radio distance from their serving base station. An uplink resource is selected as a resource for the direct D2D communication link if the base station serving each of the first and second wireless devices is equipped with an interference cancellation receiver and at least one of the first and second wireless devices is more than the predefined threshold radio distance from its serving base station.
    • 公开了用于在蜂窝通信,网络中选择用于直接设备到设备(D2D)通信的资源的系统和方法。 在一个实施例中,如果为第一和第二无线设备中的每一个提供服务的基站配备有干扰消除接收机,并且两者均为两者,则下行链路资源被选择为第一无线设备和第二无线设备之间的直接D2D通信链路的资源 第一和第二无线设备小于与其服务基站的预定义的阈值无线电距离。 如果为第一和第二无线设备中的每一个提供服务的基站配备有干扰消除接收机,则将上行链路资源选择为用于直接D2D通信链路的资源,并且第一和第二无线设备中的至少一个超过预定义的 与其服务基站的距离无线电距离。
    • 63. 发明申请
    • DEVICE DISCOVERY OF SECOND USER EQUIPMENTS IN A SECOND NETWORK FOR D2D COMMUNICATION
    • 第二个用户设备的设备在D2D通信的第二个网络中的发现
    • WO2013172755A1
    • 2013-11-21
    • PCT/SE2012/051042
    • 2012-09-28
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)
    • FODOR, GaborBELLESCHI, MarcoLINDOFF, BengtWILHELMSSON, Leif
    • H04W8/00H04W92/20H04W48/14
    • H04W8/005H04W72/04H04W92/20
    • According to a first aspect of embodiments herein, a method in a first network node for handling device discovery of second user equipments in a second network for Device to Device, D2D, communication is provided. The network node is comprised in a first 5 network. The first network node obtains (204) information from a second network node within the second network. The information relates to resources for sending device discovery beacon signals in a second network. The first network node sends (205) the obtained information to a first user equipment served by the first network node. The obtained information relates to said resources for sending device discovery beacon 10 signals in the second network. The information enables the first user equipment to discover beacon signals from the second user equipments in the second network and/or to send beacon signals to be discovered by the second user equipments in the second network.
    • 根据本文的实施例的第一方面,提供了一种用于处理设备到第二网络中的设备到设备D2D的通信的第二用户设备的设备发现的第一网络节点中的方法。 网络节点包含在前5个网络中。 第一网络节点从第二网络内的第二网络节点获得(204)信息。 该信息涉及用于在第二网络中发送设备发现信标信号的资源。 第一网络节点将获得的信息发送(205)到由第一网络节点服务的第一用户设备。 获得的信息涉及用于在第二网络中发送设备发现信标10信号的所述资源。 该信息使得第一用户设备能够从第二网络中的第二用户设备发现信标信号和/或发送由第二网络中的第二用户设备发现的信标信号。
    • 64. 发明申请
    • PROACTIVE ADMISSION CONTROL FOR MULTI-COVERAGE D2D COMMUNICATIONS
    • 多覆盖D2D通信的主动接纳控制
    • WO2016070911A1
    • 2016-05-12
    • PCT/EP2014/073775
    • 2014-11-05
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)
    • KAZMI, MuhammadFODOR, Gabor
    • H04W28/18H04W76/02
    • H04W28/0289H04L41/0803H04L41/12H04L41/5003H04W28/18H04W76/14H04W88/04
    • In some embodiments, a D2D capable wireless communication device receives parameters from a network node. The parameters comprise at least a first set of parameters indicating a configuration for use when the wireless communication device is in a first coverage scenario a second set of parameters indicating a configuration for use resources when the wireless communication device is in a second coverage scenario. The first coverage scenario is one of an in-network coverage (INC) scenario, a partial network coverage (PNC) scenario, or an out-of-network coverage (ONC) scenario. The second coverage scenario is a different one of the INC scenario, PNC scenario, or ONC scenario. The wireless communication device performs D2D operation in the first scenario based on the first set of parameters and in the second coverage scenario based on the second set of parameters.
    • 在一些实施例中,具有D2D能力的无线通信设备从网络节点接收参数。 所述参数包括指示当所述无线通信设备处于第一覆盖场景时使用的配置的至少第一组参数,所述第二组参数指示当所述无线通信设备处于第二覆盖场景时使用资源的配置。 第一个覆盖情况是网络覆盖(INC)场景,部分网络覆盖(PNC)场景或网络外覆盖(ONC)场景之一。 第二个覆盖情况是INC情景,PNC情景或ONC情景中不同的情况。 无线通信设备基于第一组参数和第二覆盖场景中的第二组参数来执行第一场景中的D2D操作。
    • 65. 发明申请
    • METHODS, WIRELESS DEVICE, BASE STATION AND CANDIDATE RELAY STATION FOR SUPPORTING D2D COMMUNICATION OVER RELAY
    • 方法,无线设备,基站和候选继电器支持D2D通信
    • WO2015119538A1
    • 2015-08-13
    • PCT/SE2014/050135
    • 2014-02-04
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)
    • FODOR, GaborBARROS DA SILVA JUNIOR, Jose MairtonPRADINI, AidillaMACIEL, Tarcísío
    • H04W76/02H04W40/12
    • H04W76/14H04W24/10H04W40/02H04W40/22H04W88/04
    • A methods, base station, wireless device and candidate relay device for supporting a D2D communication between a first wireless device and a second wireless device over a relay. The base station receives (302) from the first device an identity of a candidate relay wireless device and a first quality metric (G e q) pertaining to a first relay link between the first device and the candidate relay device and to a second relay link between the second device and the candidate relay device. The base station also obtains (304) a second quality metric (G12) pertaining to a D2D link between the first and second devices, and a third quality metric (Gl BS) pertaining to a cellular link between the base station and the first device. When the first quality metric (G e q) indicates a better link quality than both the second metric (G12) and the third metric (G1 BS), the base station selects (310) a relay mode for the D2D communication with the candidate relay device as the relay and instructs the involved devices accordingly.
    • 一种用于通过继电器支持第一无线设备和第二无线设备之间的D2D通信的方法,基站,无线设备和候选中继设备。 基站从第一设备接收候选中继无线设备的标识和与第一设备和候选中继设备之间的第一中继链路相关的第一质量度量(Geq)(和第二中继链路之间的第二中继链路) 第二设备和候选中继设备。 基站还获得(304)属于第一和第二设备之间的D2D链路的第二质量度量(G12)和属于基站和第一设备之间的蜂窝链路的第三质量度量(G1 BS)。 当第一质量度量(Geq)表示比第二度量(G12)和第三度量(G1BS)都更好的链路质量时,基站选择(310)与候选中继设备进行D2D通信的中继模式, 继电器并相应地指示相关设备。
    • 66. 发明申请
    • NETWORK NODES, A USER EQUIPMENT AND METHODS THEREIN FOR HANDLING CELLULAR AND D2D COMMUNICATIONS IN A WIRELESS COMMUNICATIONS NETWORK
    • 网络节点,用户设备及其在无线通信网络中处理蜂窝和D2D通信的方法
    • WO2015060761A1
    • 2015-04-30
    • PCT/SE2013/051607
    • 2013-12-20
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)
    • FODOR, GaborWANG, Yi-Pin EricKAZMI, Muhammad
    • H04W72/04H04W72/12H04W76/02
    • H04W72/0486H04B7/0413H04B7/0452H04B7/0456H04W52/383H04W72/044H04W72/0446H04W72/0453H04W72/082H04W76/14H04W84/042H04W92/18
    • A method performed by a network node (110) for assisting cellular communications and Device-to-Device, D2D, communications of a first set of user equipments (123, 124, 125, 143 144) served by at least one neighboring network node (111, 112) in a wireless telecommunications network (100) is provided. The network node (110) determines a load on at least one Physical Radio Resource, PRR, which PRR is assigned to a second set of user equipments (121, 122, 141, 142) served by the network node (110) for cellular and/or D2D communications. The network node (101, 102) then transmits an indication of the load to the at least one neighboring network node (111, 112), wherein the load indication further indicates that the load on the at least one PRR is caused by cellular and/or D2D communications of the second set of user equipments (121, 122, 141, 142) served by the network node (110). A network node (103) for handling cellular communications and D2D communications, user equipments (121, 122, 141, 142) and methods performed therein are also provided.
    • 由网络节点(110)执行的用于辅助由至少一个相邻网络节点服务的第一组用户设备(123,124,125,143,144)的蜂窝通信和设备到设备(D2D)通信的网络节点(110) 111,112)在无线电信网络(100)中。 网络节点(110)确定至少一个物理无线电资源PRR上的负载,PRR被分配给由网络节点(110)为蜂窝和/或网络节点(110)服务的第二组用户设备(121,122,141,142) /或D2D通信。 网络节点(101,102)然后向至少一个相邻网络节点(111,112)发送负载的指示,其中负载指示进一步指示所述至少一个PRR上的负载是由蜂窝和/ 或由网络节点(110)服务的第二组用户设备(121,122,141,142)的D2D通信。 还提供了用于处理蜂窝通信和D2D通信的网络节点(103),用户设备(121,122,141,142)及其中执行的方法。
    • 68. 发明申请
    • BEACON MANAGEMENT FOR NETWORK ASSISTED DEVICE-TO-DEVICE (D2D) COMMUNICATION
    • 网络辅助设备到设备(D2D)通信的信标管理
    • WO2013171115A1
    • 2013-11-21
    • PCT/EP2013/059598
    • 2013-05-08
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)
    • LINDOFF, BengtFODOR, GaborWILHELMSSON, LeifKAZMI, Muhammad
    • H04W8/00H04W84/18H04W88/06H04W76/02
    • H04W8/005H04W76/10H04W76/14H04W84/18H04W88/06
    • A method of a wireless communication device adapted to perform device-to-device communication is disclosed. The method comprises transmitting an indication of device-to-device communication capability to a network node (220), receiving one or more beacon parameters allocated to one or more second wireless communication devices (240) adapted to perform device-to-device communication, monitoring device-to-device communication beacon signaling based on the received beacon parameters (250), and performing at least one radio operation task based on measurements of the monitored device-to-device communication beacon signaling. The at least one radio operation task may comprise using the measurements of the monitored device-to-device communication beacon signaling to select or re-select one of the one or more second wireless communication devices for device-to-device communication, and/or transmitting (260) a beacon measurement report to the network node based on the monitored device-to-device communication beacon signaling. Another method of a wireless communication device comprises receiving one or more beacon parameters allocated to the wireless communication device from a network node (235), transmitting device-to-device communication beacon signaling based on the received beacon parameters, and receiving a beacon measurement report from the network node indicating detection of the transmitted beacon by one or more second wireless communication devices. Corresponding methods of a network node are also disclosed as well as corresponding arrangements, wireless communication devices and network nodes.
    • 公开了一种适于执行设备到设备通信的无线通信设备的方法。 该方法包括向网络节点(220)发送设备到设备通信能力的指示,接收分配给适于执行设备到设备通信的一个或多个第二无线通信设备(240)的一个或多个信标参数, 基于所接收的信标参数监测设备到设备通信信标信号(250),以及基于所监视的设备到设备通信信标信令的测量来执行至少一个无线电操作任务。 所述至少一个无线电操作任务可以包括使用所监视的设备到设备通信信标信令的测量来选择或重新选择一个或多个第二无线通信设备中的一个用于设备到设备通信,和/或 基于所监视的设备到设备通信信标信令,向网络节点发送(260)信标测量报告。 无线通信设备的另一种方法包括从网络节点(235)接收分配给无线通信设备的一个或多个信标参数,基于接收到的信标参数发送设备到设备通信信标信令,以及接收信标测量报告 从所述网络节点指示通过一个或多个第二无线通信设备检测所发送的信标。 还公开了网络节点的相应方法以及对应的布置,无线通信设备和网络节点。
    • 69. 发明申请
    • A QOS PARAMETERS TRANSLATER
    • QOS参数翻译
    • WO2003094447A1
    • 2003-11-13
    • PCT/SE2003/000592
    • 2003-04-11
    • TELEFONAKTIEBOLAGET L M ERICSSON (publ)
    • PERSSON, FredrikFODOR, Gabor
    • H04L12/56
    • H04L47/2491
    • When UMTS is part of IP end-to-end communication, there must exist means for UMTS to be able to provide the required Quality of Service (QoS) for applications running over IP. Hence there is a need for a translation function for translation between IP QoS parameters and UMTS QoS attributes. This translation is not trivial because of several reasons. First, the number of QoS parameters in the IP level and the UMTS level are different. Second, definitions of parameters at the two levels are different. Keeping these factors in view, the present invention provides for a method for translation of IP QoS parameters to UMTS QoS attributes, and another method for translation of UMTS QoS attributes to IP QoS parameters. This translation will enable spectrum efficient UMTS bearers to be set up for applications running over IP. This will also make negotiation of services possible between an entity at the IP level and the UMTS network. These methods are placed in both the User Equipment as well as the Gateway of the UMTS network.
    • 当UMTS是IP端到端通信的一部分时,必须存在用于UMTS为通过IP运行的应用提供所需服务质量(QoS)的手段。 因此,需要用于IP QoS参数和UMTS QoS属性之间的翻译的翻译功能。 这个翻译不是微不足道的,因为几个原因。 首先,IP级别和UMTS级别的QoS参数数量不同。 其次,两级参数的定义不同。 保持这些因素,本发明提供了一种将IP QoS参数转换为UMTS QoS属性的方法,以及用于将UMTS QoS属性转换为IP QoS参数的另一种方法。 这种翻译将使得能够通过IP运行的应用程序设置频谱高效的UMTS承载。 这也将使IP级别的实体与UMTS网络之间的服务协商成为可能。 这些方法被放置在用户设备以及UMTS网络的网关中。