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    • 3. 发明授权
    • Distributed fault management architecture
    • 分布式故障管理架构
    • US06665262B1
    • 2003-12-16
    • US09250193
    • 1999-02-16
    • Peter LindskogJan OomMichael Ragnar
    • Peter LindskogJan OomMichael Ragnar
    • H04J314
    • H04L41/0631H04L41/044H04L41/046H04L41/0604
    • A system and method for distributing the fault management functions throughout a communications network. Each node in the network includes an associated fault agent/configuration agent pair. The fault agent receives alarm information and correlates the alarm information to identify a cause of a fault in the network. The fault agent then determines if correction of the fault can be handled at the current node. If so, the fault agent passes information identifying the fault to the associated configuration agent, which generates reconfiguration data for handling the fault and sends the reconfiguration data to subordinate nodes for implementation. If, on the other hand, the fault agent determines that the fault cannot be handled at the current node, the fault agent passes the alarm data, in summary form, to a higher level fault agent/configuration agent pair for handling at that higher level or for further processing and passing the data up the network until a level is reached at which the fault can be handled.
    • 一种用于在整个通信网络中分发故障管理功能的系统和方法。 网络中的每个节点包括相关的故障代理/配置代理对。 故障代理接收告警信息,并将告警信息相关联,以识别网络故障原因。 然后故障代理确定是否可以在当前节点处理故障的校正。 如果是这样,故障代理将识别故障的信息传递给相关联的配置代理,其生成用于处理故障的重新配置数据,并将重新配置数据发送到下级节点用于实现。 另一方面,如果故障代理确定在当前节点无法处理故障,则故障代理将报警数据以概括形式传递到更高级别的故障代理/配置代理对,以便在较高级别处理 或用于进一步处理和将数据传递到网络直到达到可以处理故障的级别。
    • 4. 发明授权
    • Rehoming and resource sharing in communications networks
    • 通信网络中的Rehoming和资源共享
    • US06738625B1
    • 2004-05-18
    • US09569244
    • 2000-05-11
    • Jan OomPontus Wallentin
    • Jan OomPontus Wallentin
    • H04Q720
    • H04W24/02H04W36/12
    • A method, system, and apparatus enables automatic radio base station (RBS) rehoming from a first radio network controller (RNC) to a second RNC when the first RNC becomes overloaded and/or automatic resource sharing between/among RNCs when one RNC becomes overloaded. A managing/controlling entity receives load measuring reports from RNCs and analyzes them. If a first RNC is frequently and/or constantly experiencing an overcapacity condition, then an RBS of the RNC may be rehomed to a second RNC without operator intervention. If a first RNC temporarily experiences an overcapacity condition, then the workload of the first RNC may be shared by a second RNC also without operator intervention. When rehoming an RBS or sharing a load of a first RNC, ongoing connections are completed by the first RNC where the connection was initiated, but new connections are (for the rehoming case) or new connections may be (for load sharing cases) initiated using a second RNC.
    • 当一个RNC过载时,当RNC之间/ RNC之间的第一RNC变得过载和/或自动资源共享时,方法,系统和装置使能自动无线电基站(RBS)从第一无线电网络控制器(RNC)到第二RNC的归属 。 管理/控制实体从RNC接收负载测量报告并进行分析。 如果第一RNC经常和/或不断地经历过度能力条件,则RNC的RBS可以在没有操作员干预的情况下被重新连接到第二RNC。 如果第一RNC暂时遇到产能过剩的情况,那么第一RNC的工作负载也可以由第二RNC共享而不需要操作员干预。 当重新建立RBS或共享第一个RNC的负载时,正在进行的连接由连接被启动的第一个RNC完成,但是新的连接(对于重新引导的情况)或者新的连接可能是(用于负载共享的情况),使用 第二RNC。