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    • 3. 发明申请
    • DETERMINING THE FUNCTION RELATING USER-CENTRIC QUALITY OF EXPERIENCE AND NETWORK PERFORMANCE BASED QUALITY OF SERVICE
    • 确定相关的用户中心体验质量和基于网络性能的服务质量的功能
    • WO2014040646A1
    • 2014-03-20
    • PCT/EP2012/068151
    • 2012-09-14
    • HUAWEI TECHNOLOGIES CO., LTD.TRIVISONNO, RiccardoDESPOTOVIC, Zoran
    • TRIVISONNO, RiccardoDESPOTOVIC, Zoran
    • H04L12/24H04L12/26
    • H04L41/5032H04L41/044H04L41/046H04L41/16H04L41/5067H04L41/5087H04L43/067
    • The invention relates to a method for determining a network performance function indicating a user-centric quality of experience in a communication network, the method comprising: determining (405) a set of network performance and quality indicators of the communication network, receiving (407) a survey information over the communication network, the survey information indicating the quality of service as experienced by a group of users with the plurality of network performance indicators, determining from the received survey information a set of subjective quality of experience indicators indicating the quality of service as experienced by a group of users with the plurality of network performance indicators and defining a set of customer experience indicators representing the subjective quality of service indicators for the group of users; and determining (411) a relationship between the set of network performance and quality indicators and the set of customer experience indicators to obtain the network performance function.
    • 本发明涉及一种用于确定指示通信网络中以用户为中心的体验质量的网络性能功能的方法,所述方法包括:确定(405)所述通信网络的一组网络性能和质量指示符,接收(407) 通过通信网络的调查信息,指示具有多个网络性能指标的一组用户体验的服务质量的调查信息,从接收到的调查信息中确定一组指示服务质量的经验指标的主观质量 如具有多个网络性能指标的一组用户所经历的,并且定义表示用户组的主观服务质量指标的一组客户体验指示符; 并确定(411)一组网络性能与质量指标之间的关系以及一组客户体验指标,以获得网络性能功能。
    • 4. 发明申请
    • METHOD TO REDUCE THE TRANSMISSION LATENCY IN GSM/EDGE DELAY-SENSITIVE APPLICATIONS
    • 在GSM / EDGE延迟敏感应用中减少传输延迟的方法
    • WO2007118703A1
    • 2007-10-25
    • PCT/EP2007/003362
    • 2007-04-17
    • SIEMENS S.P.A.MASSERONI, CarloPAROLARI, SergioTRIVISONNO, Riccardo
    • MASSERONI, CarloPAROLARI, SergioTRIVISONNO, Riccardo
    • H04L12/56
    • H04W28/06H04L47/10H04L47/14H04L47/27H04L47/36H04W72/04H04W76/20H04W84/04
    • Real-time media or multimedia services in 3GPP GSM/EDGE-compliant mobile radio networks call for reducing the actual latency of transmissions. Resources are assigned by the network to set up or reconfigure a TBF associated to the uplink/downlink transmission of radio blocks from/to an MS. A 5-bit "Coding" field is configured in the header of the involved RLC/MAC messages to select the transmitting/receiving window size. An additional signalling bit, also called scaling bit, is asserted/negated according to two opportunities offered by the new MAC protocol to properly select the window size. Thanks to the introduction of the scaling bit a subdivision of the time windows for type of services is made possible. Non real-time services, e.g. file transfer, avail of standard window sizes for MSs with multistat capability, as reported in 3GPP TS 44.060, V7.3.0 (2006-01 ), Release 7, subclause 9.1.9, for EGPRS TBFs. Delay-sensitive services, e.g. media or multimedia real-time transmissions, avail of new window sizes with scaled down values remapped to start from 1 to (maximum) 64 RLC/MAC blocks. The scaling bit is asserted or negated by BSC accordingly. Both peer entities comprised in a TBF are receiving the RLC/MAC messages with the proper setting of the scaling bit and the 5-bit coding IF; these entities decode the scaling bit and behave accordingly. The behaviour consists of either assuming the standard window size or scaled window size addressed by the same predetermined 5-bit "coding" information element.
    • 符合3GPP GSM / EDGE标准的移动无线网络中的实时媒体或多媒体业务需要减少传输的实际延迟。 资源由网络分配,以建立或重新配置与MS的无线电块的上行链路/下行链路传输相关联的TBF。 在所涉及的RLC / MAC消息的报头中配置5位“编码”字段,以选择发送/接收窗口大小。 根据新的MAC协议提供的两个机会来正确地选择窗口大小,另外一个信号位(也称为缩放比特)被断言/否定。 由于引入缩放比特,可以对服务类型的时间窗口进行细分。 非实时服务,例如 文件传输,对于具有多状态功能的MS的标准窗口大小,如3GPP TS 44.060,V7.3.0(2006-01),版本7,9.1.9中针对EGPRS TBF所报告的。 延迟敏感服务,例如 媒体或多媒体实时传输,利用重新映射为从1到(最大)64个RLC / MAC块的缩放值的新窗口大小。 缩放位由BSC确定或否定。 包括在TBF中的两个对等实体正在接收具有缩放位和5位编码IF的适当设置的RLC / MAC消息; 这些实体解码缩放位并相应地进行操作。 该行为包括假设由相同的预定的5位“编码”信息元素寻址的标准窗口大小或缩放的窗口大小。
    • 6. 发明申请
    • METHOD TO REDUCE THE TRANSMISSION LATENCY IN GSM/EDGE DELAY-SENSITIVE APPLICATIONS
    • 在GSM / EDGE延迟敏感应用中减少传输延迟的方法
    • WO2007118703A8
    • 2011-09-09
    • PCT/EP2007003362
    • 2007-04-17
    • NOKIA SIEMENS NETWORKS GMBHMASSERONI CARLOPAROLARI SERGIOTRIVISONNO RICCARDO
    • MASSERONI CARLOPAROLARI SERGIOTRIVISONNO RICCARDO
    • H04L12/56
    • H04W28/06H04L47/10H04L47/14H04L47/27H04L47/36H04W72/04H04W76/04H04W84/04
    • Real-time media or multimedia services in 3GPP GSM/EDGE-compliant mobile radio networks call for reducing the actual latency of transmissions. Resources are assigned by the network to set up or reconfigure a TBF associated to the uplink/downlink transmission of radio blocks from/to an MS. A 5-bit 'Coding' field is configured in the header of the involved RLC/MAC messages to select the transmitting/receiving window size. An additional signalling bit, also called scaling bit, is asserted/negated according to two opportunities offered by the new MAC protocol to properly select the window size. Thanks to the introduction of the scaling bit a subdivision of the time windows for type of services is made possible. Non real-time services, e.g. file transfer, avail of standard window sizes for MSs with multistat capability, as reported in 3GPP TS 44.060, V7.3.0 (2006-01 ), Release 7, subclause 9.1.9, for EGPRS TBFs. Delay-sensitive services, e.g. media or multimedia real-time transmissions, avail of new window sizes with scaled down values remapped to start from 1 to (maximum) 64 RLC/MAC blocks. The scaling bit is asserted or negated by BSC accordingly. Both peer entities comprised in a TBF are receiving the RLC/MAC messages with the proper setting of the scaling bit and the 5-bit coding IF; these entities decode the scaling bit and behave accordingly. The behaviour consists of either assuming the standard window size or scaled window size addressed by the same predetermined 5-bit 'coding' information element.
    • 符合3GPP GSM / EDGE标准的移动无线网络中的实时媒体或多媒体业务需要减少传输的实际延迟。 资源由网络分配,以建立或重新配置与MS的无线电块的上行链路/下行链路传输相关联的TBF。 在所涉及的RLC / MAC消息的头部中配置5比特的“编码”字段,以选择发送/接收窗口大小。 根据新的MAC协议提供的两个机会来正确地选择窗口大小,另外一个信号位(也称为缩放比特)被断言/否定。 由于引入缩放比特,可以对服务类型的时间窗口进行细分。 非实时服务,例如 文件传输,对于具有多状态功能的MS的标准窗口大小,如3GPP TS 44.060,V7.3.0(2006-01),版本7,9.1.9中针对EGPRS TBF所报告的。 延迟敏感服务,例如 媒体或多媒体实时传输,利用重新映射为从1到(最大)64个RLC / MAC块的缩放值的新窗口大小。 缩放位由BSC确定或否定。 包括在TBF中的两个对等实体正在接收具有缩放位和5位编码IF的适当设置的RLC / MAC消息; 这些实体解码缩放位并相应地进行操作。 该行为包括假设由相同的预定的5位'编码'信息元素寻址的标准窗口大小或缩放的窗口大小。
    • 7. 发明申请
    • METHOD AND APPARATUS FOR ADMISSION CONTROL AND RADIO RESOURCE SCHEDULING IN WIRELESS SYSTEMS, CORRESPONDING SYSTEM AND COMPUTER PROGRAM PRODUCT
    • 无线系统中接收控制和无线资源调度的方法与装置,相关系统和计算机程序产品
    • WO2008058887A1
    • 2008-05-22
    • PCT/EP2007/062055
    • 2007-11-08
    • NOKIA SIEMENS NETWORKS GMBH & CO. KGBALLARINI, EnricoMASSERONI, CarloTRIVISONNO, Riccardo
    • BALLARINI, EnricoMASSERONI, CarloTRIVISONNO, Riccardo
    • H04L12/56
    • H04W28/24H04W28/26
    • A method of controlling admission and scheduling radio resources in a wireless systems such a WiMAX network includes the step of admitting service requests only if at the time of the service request the system is able to pre-allocate the amount of radio resources required to provide the service at the time instant the resources are required. The services are arranged in a set of Quality of Service (QoS) classes (UGS, ERT-VR, RT-VR, NRT-VR, BE) to which priorities are assigned. Admission control and radio resource scheduling is performed by sharing the radio resources available among the QoS classes as a function of the priorities, whereby the QoS classes having a lower priority (RT-VR) may utilize the amount of resources left unused by the classes having a higher priority (UGS, ERT-VR). Pre-allocating the radio resources involves the operation of pre-provisioning the time frames for serving a given user as a function of ideal service times at which the user should be served in order to maintain a constant information flow by taking the maximum tolerated jitter as a delay constraint. In the presence of a plurality of users pre-provisioned with different respective service time frames, the respective service time frames are combined in a common multi-frame. A pre-scheduling data structure is compiled with a list of CIDs and respective data grant sizes for each frame in the form of a multiframe wheel structure.
    • 一种在诸如WiMAX网络的无线系统中控制准入和调度无线电资源的方法包括:只有在服务请求时,系统才能预先分配所需的无线电资源量,才允许服务请求 在需要资源的时候提供服务。 这些服务被安排在分配优先级的一组服务质量(QoS)类别(UGS,ERT-VR,RT-VR,NRT-VR,BE)中。 通过共享作为优先级的函数的QoS类别中可用的无线电资源来执行接纳控制和无线资源调度,由此具有较低优先级的QoS类别(RT-VR)可以利用由具有 优先级较高(UGS,ERT-VR)。 预先分配无线电资源包括预先为用户提供服务的时间段的操作,作为用户应该被服务的理想服务时间的函数,以便通过采用最大容忍抖动来维持恒定的信息流 一个延迟约束。 在存在预先配置有不同的相应服务时间帧的多个用户的情况下,各个服务时间帧以公共多帧组合。 以多帧轮结构的形式对每个帧的CID列表和相应的数据许可大小进行编排预调度数据结构。
    • 8. 发明申请
    • SESSION MANAGEMENT FOR MASSIVE MACHINE TYPE COMMUNICATION IN 5G NETWORKS
    • 5G网络中大规模机型通信的会话管理
    • WO2018006933A1
    • 2018-01-11
    • PCT/EP2016/065702
    • 2016-07-04
    • HUAWEI TECHNOLOGIES CO., LTD.TRIVISONNO, RiccardoAN, Xueli
    • TRIVISONNO, RiccardoAN, Xueli
    • H04W4/00H04W8/26H04W76/02
    • H04W76/10H04W4/70H04W8/22H04W76/11H04W76/12
    • The invention relates to a control plane, CP, network entity (305) configured to manage communication between an access network, AN, and a core network, CN, of a wireless communication system (300), wherein the CP network entity (305) comprises a processor configured, in response to a connectivity request from a first physical device (301a), to assign the first physical device (301a) to a virtual device (301) and to establish an aggregate CN bearer for the virtual device (301). In an embodiment, the first physical device (301a) is associated with a device class parameter and the processor is configured, in response to a connectivity request from a second physical device (301b), to assign the second physical device (301b) to the virtual device (301), in case a device class parameter associated with the second physical device (301b) is identical to the device class parameter of the first physical device (301a), or, in case the device class parameter associated with the second physical device (301b) differs from the device class parameter of the first physical device (301a), to assign the second physical device (301b) to a further virtual device and to establish a further aggregate CN bearer for the further virtual device.
    • 本发明涉及一种控制平面CP网络实体(305),其被配置为管理接入网AN和无线通信系统(300)的核心网CN之间的通信, 其中所述CP网络实体(305)包括处理器,所述处理器被配置为响应于来自第一物理设备(301a)的连接性请求将所述第一物理设备(301a)分配给虚拟设备(301)并且建立聚合CN 承载虚拟设备(301)。 在一个实施例中,第一物理设备(301a)与设备类参数相关联,并且处理器被配置为响应于来自第二物理设备(301b)的连接请求,将第二物理设备(301b)分配给 虚拟设备(301)在与第二物理设备(301b)相关联的设备类参数与第一物理设备(301a)的设备类参数相同的情况下,或者在与第二物理设备 设备(301b)不同于第一物理设备(301a)的设备类别参数,将第二物理设备(301b)分配给另一虚拟设备并为另外的虚拟设备建立另一聚合CN承载。
    • 9. 发明申请
    • FUNCTION SELECTION IN MOBILE NETWORKS
    • 移动网络中的功能选择
    • WO2017140375A1
    • 2017-08-24
    • PCT/EP2016/053537
    • 2016-02-19
    • HUAWEI TECHNOLOGIES CO., LTD.AN, XueliZHOU, ChanGUERZONI, RiccardoTRIVISONNO, RiccardoKALOXYLOS, Alexandros
    • AN, XueliZHOU, ChanGUERZONI, RiccardoTRIVISONNO, RiccardoKALOXYLOS, Alexandros
    • H04W48/12
    • H04W48/12
    • A telecommunication network (1) is provided, comprising: a set of functions which comprises at least one access function and at least one network function; wherein the telecommunication network is configured to provide compositions of functions based on at least one access function and at least one network function, and each composition of functions is uniquely identified by an identifier; wherein the telecommunication network is further configured to provide to a terminal equipment at least one composition of functions based on at least one access function and at least one network function; wherein the telecommunication network is further configured to make available the information of the at least one composition of functions to the terminal equipment (2); wherein the information of the at least one composition of functions comprises identifier of each composition of functions of the at least one composition of functions; wherein the telecommunication network is further configured to receive a request for using at least one composition of function from the terminal equipment (2); wherein the telecommunication network (1) is further configured to respond to the request from the terminal equipment (2).
    • 提供了一种电信网络(1),包括:一组功能,其包括至少一个接入功能和至少一个网络功能; 其中所述电信网络被配置为基于至少一个接入功能和至少一个网络功能来提供功能的组合,并且每个功能组合由标识符唯一地标识; 其中所述电信网络还被配置为基于至少一个接入功能和至少一个网络功能向终端设备提供功能的至少一个组合; 其中所述电信网络还被配置为向所述终端设备(2)提供所述至少一个功能组合的信息; 其中所述至少一个功能组合的信息包括所述至少一个功能组合的功能的每个功能组合的标识符; 其中所述电信网络还被配置为从所述终端设备(2)接收使用至少一个功能组合的请求; 其中所述电信网络(1)还被配置为响应来自所述终端设备(2)的所述请求。