会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 13. 发明申请
    • TRAFFIC CONTROL IN A COMMUNICATION NETWORK
    • 通信网络中的流量控制
    • WO2017092779A1
    • 2017-06-08
    • PCT/EP2015/078012
    • 2015-11-30
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
    • ÖHLÉN, PeterROSTAMI, Ahmad
    • H04L12/801H04W40/18
    • H04L67/322H04L47/127H04L63/10H04W16/10H04W16/18H04W16/22H04W28/0231H04W28/0236H04W28/0257H04W40/18H04W72/1252H04W72/1257
    • A method for traffic control is disclosed for a communication network comprising a controller node operationally connectable to a plurality of network nodes. The controller node acquires one or more current communication scenario parameters provided to the controller node by each of one or more first network nodes out of the plurality of network nodes. The controller node predicts (based on the acquired current communication scenario parameters) one or more future communication scenarios, wherein each predicted communication scenario comprises one or more predicted communication scenario parameters for each of one or more second network nodes out of the plurality of network nodes. Furthermore, the controller node determines (for at least one selected communication scenario out of the predicted communication scenarios) a traffic control operation for each of one or more third network nodes out of the plurality of network nodes. The controller node transmits, to each of the one or more third network nodes, a message indicative of the determined traffic control operation and the predicted communication scenario parameters for each of the selected communication scenarios. Each of the one or more third network nodes may compare one or more subsequent current communication scenario parameters to the predicted communication scenario parameters, and (if a match is detected for any of the selected communication scenarios) perform the corresponding determined traffic control operation. Corresponding computer program product, arrangements, network node, controller node and communication network are also disclosed.
    • 公开了一种用于通信网络的通信量控制方法,该通信网络包括可操作地连接到多个网络节点的控制器节点。 控制器节点获取由多个网络节点中的一个或多个第一网络节点中的每一个提供给控制器节点的一个或多个当前通信场景参数。 控制器节点(基于所获取的当前通信场景参数)预测一个或多个未来通信场景,其中每个预测通信场景包括多个网络节点中的一个或多个第二网络节点中的每一个的一个或多个预测通信场景参数 。 此外,控制器节点针对多个网络节点中的一个或多个第三网络节点中的每一个确定(对于预测的通信场景中的至少一个所选通信场景)流量控制操作。 控制器节点向一个或多个第三网络节点中的每一个发送指示针对所选择的通信场景中的每一个的所确定的业务控制操作和预测的通信场景参数的消息。 一个或多个第三网络节点中的每一个可以将一个或多个后续当前通信场景参数与预测通信场景参数进行比较,并且(如果针对任何所选通信场景检测到匹配)执行相应确定的业务控制操作。 还公开了相应的计算机程序产品,装置,网络节点,控制器节点和通信网络。
    • 14. 发明申请
    • A NETWORK ENTITY AND A METHOD FOR SELECTING A COMMUNICATION RELAY
    • 网络实体和选择通信中继的方法
    • WO2017088895A1
    • 2017-06-01
    • PCT/EP2015/077306
    • 2015-11-23
    • HUAWEI TECHNOLOGIES CO., LTD.FEKI, AfefDUARTE GELVEZ, MelissaVALENTIN, StefanROSE, Luca
    • FEKI, AfefDUARTE GELVEZ, MelissaVALENTIN, StefanROSE, Luca
    • H04W24/02H04W16/18
    • H04W24/02H04B7/2606H04W16/18
    • The invention relates to a network entity (100) for selecting a communication relay (101a) from a plurality of communication relays (100a-c) within the service area (103) of a base station (105) covering a plurality of geographic positions, wherein each communication relay (101a-c) is able to retransmit the communication between the base station (105) and a user equipment (107), wherein the network entity (100) comprises a divider (109) configured to divide the service area (103) into a plurality of different regions on the basis of an attenuation measure at each geographic position of the service area (103), a determiner (111) configured to determine for each pair of regions in the service area (103) a spatial isolation measure on the basis of the attenuation measures at the geographic positions within the regions, and a selector (113) configured to select a communication relay (101a) from the plurality of communication relays (101a-c) on the basis of the spatial isolation measures associated with the geographic position of each communication relay of the plurality of communication relays (101a-c).
    • 本发明涉及一种用于从基站(105)的服务区(103)内的多个通信中继(100a-c)中选择通信中继(101a)的网络实体(100) )覆盖多个地理位置,其中每个通信中继器(101a-c)能够重传基站(105)和用户设备(107)之间的通信,其中网络实体(100)包括分频器 ),被配置为基于服务区域(103)的每个地理位置处的衰减测量将服务区域(103)划分为多个不同区域;确定器(111),被配置为确定服务区域(103)中的每对区域 服务区域(103)基于区域内的地理位置处的衰减测量来确定空间隔离度量,以及选择器(113),其被配置为从多个通信中继(101a-c)中选择通信中继(101a) 在空间孤立的基础上 与与多个通信中继(101a-c)的每个通信中继的地理位置相关联的措施。
    • 15. 发明申请
    • WIRELESS AD HOC NETWORK ASSEMBLY USING NETWORK CODING
    • 用网络编码实现无线自组网
    • WO2017078973A1
    • 2017-05-11
    • PCT/US2016/058622
    • 2016-10-25
    • MOTOROLA MOBILITY LLC
    • MURALI, Narasimha
    • H04L12/751H04L12/753
    • H04W76/15H04L41/0806H04L45/02H04L45/48H04W16/18H04W84/18
    • A method of setting up a wireless ad hoc network includes constructing an initial network graph by a source device (401). The network graph represents the source device (401), at least one intermediate device (407, 408, 409), and at least one communication path (402) between the source device (401) and the intermediate device. The initial network graph is sent from the source device (401) to the intermediate device (407, 408, 409) along with an update request. The source device (401) receives a second network graph from the intermediate device (407, 408, 409) in response to sending the initial network graph, and determines an updated network graph by performing a union of the initial network graph and the second network graph. The process is performed by each intermediate device (407, 408, 409) required to reach a destination device (411, 412, 413).
    • 一种建立无线自组织网络的方法包括由源设备(401)构建初始网络图。 网络图表表示源设备(401),至少一个中间设备(407,408,409)以及源设备(401)和中间设备之间的至少一个通信路径(402)。 初始网络图连同更新请求一起从源设备(401)发送到中间设备(407,408,409)。 源设备(401)响应于发送初始网络图从中间设备(407,408,409)接收第二网络图,并且通过执行初始网络图和第二网络的联合来确定更新的网络图 图形。 该过程由到达目的地设备(411,412,413)所需的每个中间设备(407,408,409)执行。
    • 18. 发明申请
    • PREDICTING NETWORK PERFORMANCE
    • 预测网络性能
    • WO2017016472A1
    • 2017-02-02
    • PCT/CN2016/091746
    • 2016-07-26
    • HUAWEI TECHNOLOGIES CO., LTD.
    • GOPALAKRISHNAN, NanduYANG, JinROA, JuanMATHEW, JamesSHEEN, Baoling S.REN, Yong
    • H04W24/02H04W24/04
    • H04W24/08H04W16/18H04W16/22H04W24/04H04W24/10
    • Methods and systems for predicting network performance include receiving a number of sets of data points of a number of network elements. Each of the number of sets of data points includes performance counter values and a performance indicator of a respective network element of the number of network elements. A global model representing a global relationship pattern between the performance indicator and the performance counter values is determined based on the number of sets of data points of the number of network elements. For each network element, residual features are determined based on error measures between the global model and the set of data points including the performance indicator and the performance counter values of the network element. The number of network elements are clustered into a number of clusters based on the determined residual features of the number of network elements.
    • 用于预测网络性能的方法和系统包括接收多个网络元件的多个数据点集合。 多个数据点集合中的每一个包括性能计数器值和网络元件数量的相应网络元件的性能指标。 基于网络元件数量的数据点的集合的数量来确定表示性能指标和性能计数器值之间的全局关系模式的全局模型。 对于每个网络元素,基于全局模型和包括网络元件的性能指标和性能计数器值的数据点集合之间的误差测量来确定残差特征。 基于所确定的网络元件数量的残留特征,将网络元件的数量聚类成多个簇。