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
    • 2. 发明申请
    • METHOD AND SYSTEM FOR NETWORK FAULT MANAGEMENT
    • 网络故障管理方法与系统
    • WO2009129841A1
    • 2009-10-29
    • PCT/EP2008/054819
    • 2008-04-21
    • Telefonaktiebolaget L M Ericsson (publ)VERES, AndrasVADERNA, PeterKUBINSZKY, FerencBENKÕ, PéterSZABÓ, GergelyMALOMSOKY, SzabolcsBORSOS, Tamas
    • VERES, AndrasVADERNA, PeterKUBINSZKY, FerencBENKÕ, PéterSZABÓ, GergelyMALOMSOKY, SzabolcsBORSOS, Tamas
    • H04L12/24H04L12/26
    • H04L41/0677H04L41/024H04L41/0686H04L41/5009
    • Present invention relates to localization of network faults in network systems. Methods of processing record data are presented, together with a Central Management Node (208) for processing record data, and Management Subsystem DataBases (104; 202, 204, 206) for providing a record data set and matching record data. Triggered by service related network fault event (step 402), a key table comprising at least one key type is determined (step 412), based on a focus target record and related to the network fault event is determined, which key table is used in the step matching (step 604) the at least one key with record data sets in determined Management Subsystem DataBases (208). Matched results are merged (step 418), whereafter a service performance indicator may be determined (step 422), based on which a multi-layer water flow analysis of subsystem specific performance related indicators can be obtained (step 424). This analysis may be successfully used to reveal the location of the service related network fault. One of many advantages is considering the per-service-instance relation between events that originate from various layers of a protocol and from different subsystems.
    • 本发明涉及网络系统中网络故障的定位。 与用于处理记录数据的中央管理节点(208)和用于提供记录数据集和匹配记录数据的管理子系统数据库(104; 202,204,206)一起呈现处理记录数据的方法。 由服务相关的网络故障事件触发(步骤402),确定包括至少一个密钥类型的密钥表(步骤412),基于焦点目标记录并确定与网络故障事件相关的哪个密钥表用于 在所确定的管理子系统数据库(208)中,将具有记录数据集的至少一个密钥与步骤匹配(步骤604)。 匹配的结果被合并(步骤418),之后可以确定服务性能指示符(步骤422),基于该结果可以获得子系统特定性能相关指示符的多层水流分析(步骤424)。 该分析可能被成功地用于揭示服务相关网络故障的位置。 许多优点之一是考虑来自协议的各个层次的事件和来自不同子系统的事件之间的每个服务实例的关系。
    • 5. 发明申请
    • ESTIMATING USER-PERCEIVED TCP THROUGHPUT
    • 估计用户感知的TCP通信
    • WO2010149186A1
    • 2010-12-29
    • PCT/EP2009/004597
    • 2009-06-25
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)BORSOS, TamasKOVÁCS, László
    • BORSOS, TamasKOVÁCS, László
    • H04L12/24H04L12/26
    • H04L41/5067H04L43/0888
    • A passive network measurement based solution for estimating user-perceived TCP throughput in a mobile PS network is provided. Instead of direct detection of TCP bulk data periods and server side limitations, the diversity of TCP connection end-points on the Internet side is exploited. The TCP throughput at an interface of the mobile network from/ to each server on the Internet side during a file/object transfer of bulk date periods is monitored and measured and the servers are ranked according to their throughput statistics. The top performing servers are grouped into classes by statistical algorithms. The throughput samples from the users towards the servers belonging to the top group of highest average throughput are averaged to obtain a proper estimation for the user-perceived TCP throughput.
    • 提供了一种用于估计移动PS网络中用户感知TCP吞吐量的基于无源网络测量的解决方案。 TCP批量数据周期和服务器端限制的直接检测,而不是互联网侧的TCP连接端点的多样性。 在批量日期的文件/对象传输期间,监视和测量在互联网侧的移动网络与每个服务器的接口上的TCP吞吐量,并根据服务器的吞吐量统计量对服务器进行排名。 最高性能的服务器通过统计算法分组成类。 对来自用户的属于最高平均吞吐量的最高组的服务器的吞吐量采样进行平均,以获得用户感知的TCP吞吐量的适当估计。
    • 7. 发明申请
    • TRAFFIC MONITORING BY LOWEST TRANSMISSION LAYER MARKING
    • 通过最低传输层标记进行交通监控
    • WO2009146747A1
    • 2009-12-10
    • PCT/EP2008/056995
    • 2008-06-05
    • TELEFONAKTIEBOLAGET LM ERICSSON (publ)MALOMSOKY, SzabolcsBORSOS, TamasSZABO, Geza
    • MALOMSOKY, SzabolcsBORSOS, TamasSZABO, Geza
    • H04L12/26H04W24/08
    • H04L43/026
    • A monitoring system is provided for monitoring transport of data through interconnected nodes for processing data packets in a communication system, wherein said data packets conform to a layered transmission protocol, the system comprising : (1) a marking node for marking a packet selected according to a marking rule by placing a monitoring indicator in the lowest protocol layer thereof, said data packet having a first number of protocol layers, (2) at least, one packet processing node for forming a data packet based or the marked packet, such that said formed data packet comprises a second number of protocol layers that is different from said first number of protocol layers and such that said indicator is in the lowest protocol layer of said formed data packet, and (3) a monitoring node for monitoring said transport of data on the basis of the indicators in data packets that have passed through the at least one packet processing node.
    • 提供了一种监视系统,用于监视通过互连节点的数据传输,以处理通信系统中的数据分组,其中所述数据分组符合分层传输协议,所述系统包括:(1)标记节点,用于标记根据 通过将监视指示器放置在其最低协议层中,所述数据分组具有第一数量的协议层,(2)至少一个用于形成数据分组的分组处理节点或标记的分组,使得所述 形成的数据分组包括与所述第一协议层数不同的第二数量的协议层,并且使得所述指示符处于所述形成的数据分组的最低协议层,以及(3)用于监视所述数据传输的监视节点 基于已经通过至少一个分组处理节点的数据分组中的指示符。