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    • 1. 发明申请
    • Estimating a Severity Level of a Network Fault
    • 估计网络故障的严重性级别
    • US20130290783A1
    • 2013-10-31
    • US13458472
    • 2012-04-27
    • David B. BowlerBrian M. BasileClarke V. GreeneXiang He
    • David B. BowlerBrian M. BasileClarke V. GreeneXiang He
    • G06F11/30
    • H04L41/0609H04L41/0681H04L41/12H04L41/22H04L43/0823
    • A method of estimating a level of severity of a network fault is provided. Performance parameters are monitored on upstream and downstream links to terminal network elements on a network to detect potential network faults. An alarm is raised with respect to a potential network fault automatically if at least one of the performance parameters as monitored crosses a preset threshold. After an alarm is raised, a level of severity is assigned to the alarm based on pre and post forward error correction (FEC) bit error rates (BER). In addition, the total number of terminal network elements that are impacted by the network fault is estimated and, when multiple alarms are raised of an equal level of severity, a higher priority is placed upon an alarm that affects service to a greatest number of terminal network elements.
    • 提供了一种估计网络故障严重程度的方法。 在网络上的终端网络元件的上游和下游链路上监控性能参数,以检测潜在的网络故障。 如果所监视的性能参数中的至少一个与预设阈值相交,就会自动发出关于潜在网络故障的警报。 警报发生后,基于前置和前向纠错(FEC)误码率(BER),将警报级别分配给警报。 另外,估计受网络故障影响的终端网络元件总数,当多个告警提升到相同的严重级别时,优先级高于影响最大数量终端的服务的告警 网络元素。
    • 2. 发明申请
    • Estimating Physical Locations of Network Faults
    • 估计网络故障的物理位置
    • US20130286852A1
    • 2013-10-31
    • US13458504
    • 2012-04-27
    • David B. BowlerBrian M. BasileClarke V. GreeneXiang He
    • David B. BowlerBrian M. BasileClarke V. GreeneXiang He
    • G06F11/00
    • H04L1/00G01R31/08H04L41/0677H04L41/12H04L41/22H04L41/5035H04L41/507
    • A method of estimating a physical location of a network fault is provided. Information is received concerning the physical topology of the network by data pulls of information concerning network components and terminal network elements and geographic locations thereof. A network fault is detected by monitoring at least one performance parameter transmitted via upstream communications from the terminal network elements, and a physical location of a network fault is estimated based on the performance parameter, the physical topology of the network, and the terminal network element or elements from which the performance parameter was received that indicated the network fault. A list of network components that require inspection and that may provide a source of the network fault is generated. A signal processing electronic device for mapping the network fault and a non-transitory computer readable storage medium having computer program instructions are also provided.
    • 提供了估计网络故障的物理位置的方法。 通过关于网络组件和终端网络元件及其地理位置的信息的数据拉动来接收关于网络的物理拓扑的信息。 通过监视从终端网络元件经由上行通信发送的至少一个性能参数来检测网络故障,并且基于性能参数,网络的物理拓扑以及终端网元来估计网络故障的物理位置 或接收到指示网络故障的性能参数的元素。 生成需要检查并可能提供网络故障源的网络组件列表。 还提供了用于映射网络故障的信号处理电子设备和具有计算机程序指令的非暂时性计算机可读存储介质。
    • 3. 发明授权
    • Estimating a severity level of a network fault
    • 估计网络故障的严重性级别
    • US08868736B2
    • 2014-10-21
    • US13458472
    • 2012-04-27
    • David B. BowlerBrian M. BasileClarke V. GreeneXiang He
    • David B. BowlerBrian M. BasileClarke V. GreeneXiang He
    • G06F15/173
    • H04L41/0609H04L41/0681H04L41/12H04L41/22H04L43/0823
    • A method of estimating a level of severity of a network fault is provided. Performance parameters are monitored on upstream and downstream links to terminal network elements on a network to detect potential network faults. An alarm is raised with respect to a potential network fault automatically if at least one of the performance parameters as monitored crosses a preset threshold. After an alarm is raised, a level of severity is assigned to the alarm based on pre and post forward error correction (FEC) bit error rates (BER). In addition, the total number of terminal network elements that are impacted by the network fault is estimated and, when multiple alarms are raised of an equal level of severity, a higher priority is placed upon an alarm that affects service to a greatest number of terminal network elements.
    • 提供了一种估计网络故障严重程度的方法。 在网络上的终端网络元件的上游和下游链路上监控性能参数,以检测潜在的网络故障。 如果所监视的性能参数中的至少一个与预设阈值相交,就会自动发出关于潜在网络故障的警报。 警报发生后,基于前置和前向纠错(FEC)误码率(BER),将警报级别分配给警报。 另外,估计受网络故障影响的终端网元总数,当发生多个等级严重级别的警报时,会对最大数量的终端影响服务的报警优先级较高 网络元素。
    • 4. 发明授权
    • Mapping a network fault
    • 映射网络故障
    • US08837302B2
    • 2014-09-16
    • US13458435
    • 2012-04-27
    • Brian M. BasileDavid B. BowlerPatrick R. CongdonDavid DankulichClarke V. GreeneXiang He
    • Brian M. BasileDavid B. BowlerPatrick R. CongdonDavid DankulichClarke V. GreeneXiang He
    • H04L12/26H04L12/24
    • H04L12/26H04L41/0618H04L41/065H04L41/0893H04L41/12H04L41/22H04L43/00H04L43/16
    • A method of mapping a network fault is provided. Information is received concerning geographical coordinates of terminal network elements and their association with shared network components. A performance parameter is transmitted via upstream network communications from the terminal network elements is monitored. Terminal network elements from which the monitored performance parameter are unacceptable relative to a predetermined threshold for the performance parameter are identified, and a cluster of terminal network elements estimated to be subject to a common network fault is defined. The cluster includes terminal network elements that are identified as reporting an unacceptable performance parameter, as being within a predetermined geographic distance from each other, and as being associated with a common shared network component. A geographic map is populated with a single cluster alarm and includes an identification of the terminal network elements within the cluster. An electronic device and non-transitory computer readable storage medium are provided.
    • 提供了映射网络故障的方法。 收到关于终端网元的地理座标及其与共享网络组件的关联的信息。 性能参数通过上游网络通信从终端网元进行监控。 识别监测的性能参数相对于性能参数的预定阈值不能接受的终端网络元件,并且定义估计为经受公共网络故障的终端网络元件的集群。 集群包括被识别为报告不可接受的性能参数的终端网络元件,处于彼此之间的预定地理距离内,并且与公共共享网络组件相关联。 地理地图用单个群集警报填充,并包括群集内的终端网络元素的标识。 提供电子设备和非暂时性计算机可读存储介质。
    • 5. 发明授权
    • Digital node for hybrid fiber/coax network
    • 混合光纤/同轴电缆网络的数字节点
    • US07031335B1
    • 2006-04-18
    • US09432558
    • 1999-11-03
    • John E. DonohueAravanan GurusamiClarke V. Greene
    • John E. DonohueAravanan GurusamiClarke V. Greene
    • H04L12/413
    • H04B10/272
    • An optical distribution node is provided. The optical distribution node includes a laser transceiver that is coupleable to at least one fiber optic link. The optical distribution node communicates upstream and downstream digital data with the head end over the at least one fiber optic link. The optical distribution node further includes a data concentrator coupled to the laser transceiver. Further, for each of at least one coaxial cable link, the optical distribution node includes a frequency translator and a node modem. The frequency translator receives and translates the upstream digital data from modems on the at least one coaxial cable link to a different carrier to provide a signal to the modems on the at least one coaxial cable link for collision detection. The node modem is coupled between the coaxial cable link and the data concentrator. The node modem demodulates upstream digital data for the data concentrator and modulates downstream digital data for transmission over the coaxial cable link.
    • 提供光分配节点。 光分配节点包括可耦合到至少一个光纤链路的激光收发器。 光分配节点通过至少一个光纤链路将上游和下游数字数据与头端通信。 光分配节点还包括耦合到激光收发器的数据集中器。 此外,对于至少一个同轴电缆链路中的每一个,光分配节点包括频率转换器和节点调制解调器。 频率转换器将上游数字数据从至少一个同轴电缆链路上的调制解调器接收并转换到不同的载波,以向至少一个同轴电缆链路上的调制解调器提供信号用于冲突检测。 节点调制解调器耦合在同轴电缆链路和数据集中器之间。 节点调制解调器解调用于数据集中器的上游数字数据,并调制下行数字数据以在同轴电缆链路上传输。
    • 7. 发明授权
    • Estimating physical locations of network faults
    • 估计网络故障的物理位置
    • US08867371B2
    • 2014-10-21
    • US13458504
    • 2012-04-27
    • David B. BowlerBrian M. BasileClarke V. GreeneXiang He
    • David B. BowlerBrian M. BasileClarke V. GreeneXiang He
    • H04L12/26H04L1/00G01R31/08
    • H04L1/00G01R31/08H04L41/0677H04L41/12H04L41/22H04L41/5035H04L41/507
    • A method of estimating a physical location of a network fault is provided. Information is received concerning the physical topology of the network by data pulls of information concerning network components and terminal network elements and geographic locations thereof. A network fault is detected by monitoring at least one performance parameter transmitted via upstream communications from the terminal network elements, and a physical location of a network fault is estimated based on the performance parameter, the physical topology of the network, and the terminal network element or elements from which the performance parameter was received that indicated the network fault. A list of network components that require inspection and that may provide a source of the network fault is generated. A signal processing electronic device for mapping the network fault and a non-transitory computer readable storage medium having computer program instructions are also provided.
    • 提供了估计网络故障的物理位置的方法。 通过关于网络组件和终端网络元件及其地理位置的信息的数据拉动来接收关于网络的物理拓扑的信息。 通过监视从终端网络元件经由上行通信发送的至少一个性能参数来检测网络故障,并且基于性能参数,网络的物理拓扑以及终端网元来估计网络故障的物理位置 或接收到指示网络故障的性能参数的元素。 生成需要检查并可能提供网络故障源的网络组件列表。 还提供了用于映射网络故障的信号处理电子设备和具有计算机程序指令的非暂时性计算机可读存储介质。
    • 8. 发明申请
    • Mapping a Network Fault
    • 映射网络故障
    • US20130290791A1
    • 2013-10-31
    • US13458435
    • 2012-04-27
    • Brian M. BasileDavid B. BowlerPatrick R. CongdonDavid DankulichClarke V. GreeneXiang He
    • Brian M. BasileDavid B. BowlerPatrick R. CongdonDavid DankulichClarke V. GreeneXiang He
    • G06F11/30G06F15/173
    • H04L12/26H04L41/0618H04L41/065H04L41/0893H04L41/12H04L41/22H04L43/00H04L43/16
    • A method of mapping a network fault is provided. Information is received concerning geographical coordinates of terminal network elements and their association with shared network components. A performance parameter is transmitted via upstream network communications from the terminal network elements is monitored. Terminal network elements from which the monitored performance parameter are unacceptable relative to a predetermined threshold for the performance parameter are identified, and a cluster of terminal network elements estimated to be subject to a common network fault is defined. The cluster includes terminal network elements that are identified as reporting an unacceptable performance parameter, as being within a predetermined geographic distance from each other, and as being associated with a common shared network component. A geographic map is populated with a single cluster alarm and includes an identification of the terminal network elements within the cluster. An electronic device and non-transitory computer readable storage medium are provided.
    • 提供了映射网络故障的方法。 收到关于终端网元的地理座标及其与共享网络组件的关联的信息。 性能参数通过上游网络通信从终端网元进行监控。 识别监测的性能参数相对于性能参数的预定阈值不能接受的终端网络元件,并且定义估计为经受公共网络故障的终端网络元件的集群。 集群包括被识别为报告不可接受的性能参数的终端网络元件,处于彼此之间的预定地理距离内,并且与公共共享网络组件相关联。 地理地图用单个群集警报填充,并包括群集内的终端网络元素的标识。 提供电子设备和非暂时性计算机可读存储介质。