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    • 8. 发明授权
    • Remote interface for a network device in the physical plant
    • 物理设备中网络设备的远程接口
    • US07450520B2
    • 2008-11-11
    • US10617192
    • 2003-07-10
    • Eric BernierJohn WatkinsGlenn Algie
    • Eric BernierJohn WatkinsGlenn Algie
    • H04L12/26H04Q7/20
    • H04W88/00
    • A network device such as a combination ONU-DSLAM deployed outside the central office includes a wireless transceiver to enable a technician to interface with the network device over a wireless control channel. This allows the technician to monitor, interrogate, and control the network device to ascertain performance of the network or the network device and cause the network device to perform particular desired operations. Additionally, providing a wireless interface enables the network technician to fix specific perceived problems in the network device, such as by uploading new software to the network device, to enable the network device to have increased functionality or more reliable performance. Infra-red, wireless, powerline, or another technology may be used to interface with the network device. The wireless access port may also enable subscribers to access the network, for example by causing the network device to act as an 802.11 hot spot.
    • 诸如部署在中心局外部的组合ONU-DSLAM的网络设备包括无线收发器,以使得技术人员能够通过无线控制信道与网络设备进行接口。 这允许技术人员监视,询问和控制网络设备以确定网络或网络设备的性能并使网络设备执行特定的期望操作。 此外,提供无线接口使得网络技术人员能够修复网络设备中的特定感知问题,例如通过将新软件上传到网络设备,以使网络设备具有增加的功能或更可靠的性能。 可以使用红外,无线,电力线或其他技术来与网络设备进行接口。 无线接入端口还可以使订户能够访问网络,例如通过使网络设备充当802.11热点。
    • 10. 发明授权
    • Method and system for configuring a connection-oriented packet network over a wavelength division multiplexed optical network
    • 通过波分复用光网络配置面向连接的分组网络的方法和系统
    • US07676154B2
    • 2010-03-09
    • US11427522
    • 2006-06-29
    • Mirjana VukovicDominic GoodwillEric Bernier
    • Mirjana VukovicDominic GoodwillEric Bernier
    • H04J14/00H04B10/20
    • H04Q11/0005H04J14/0227H04J14/0246H04J14/0258H04J14/0283H04Q2011/0037
    • A network planning tool and method for configuring a connection-oriented packet network over a WDM optical network without an optical control layer, such as a SONET/SDH layer. The optical network includes a plurality of optical fibers interconnected through nodes and the connection-oriented packet network, such an Ethernet network, MPLS network, or pseudowire network, includes two or more terminal devices. The method and tool function by building an association between the components of the physical layer, such as the optical fiber, and their geographic location or path. The connection-oriented packet network is configured by building multi-link trunks (MLTs) between terminal devices, where the MLTs are built by aggregating lightpaths that traverse distinctive geographic paths. The MLTs are planned and configured through aggregating lightpaths that traverse incongruent sets of photonic elements. A predetermined target for resiliency to physical failure events may determine the degree of congruence allowed between the sets of photonic elements associated with lightpaths in the same MLT.
    • 一种网络规划工具和方法,用于在无光控制层(例如SONET / SDH层)的WDM光网络上配置面向连接的分组网络。 光网络包括通过节点互连的多个光纤和面向连接的分组网络,诸如以太网,MPLS网络或伪线网络,包括两个或多个终端设备。 该方法和工具功能通过在诸如光纤的物理层的组件之间建立关联,以及它们的地理位置或路径。 面向连接的分组网络通过在终端设备之间建立多链路中继(MLT)来配置,其中MLT通过聚合穿过不同地理路径的光路来构建。 MLT通过聚合穿过不一致的光子元素的光路来规划和配置。 对于物理故障事件的弹性的预定目标可以确定在相同MLT中与光路相关联的光子元件组之间允许的一致性程度。