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    • 1. 发明授权
    • Cellular network traffic offload via local wireless connectivity
    • 蜂窝网络流量通过本地无线连接卸载
    • US08554142B2
    • 2013-10-08
    • US13164318
    • 2011-06-20
    • Scott J. HooverPaul V. HubnerGary L. CampbellJoseph A. Hilburn
    • Scott J. HooverPaul V. HubnerGary L. CampbellJoseph A. Hilburn
    • H04B7/00
    • H04W76/14
    • A network device receives, from a first mobile communication device via a cellular network, a message to attempt initiate the set-up of data transfer via a local wireless connectivity method. The network device determines a proximity within the cellular network of the first mobile communication device with respect to a second mobile communication device that is the target of the data transfer, and determines a geographic proximity of the first mobile communication device with respect to the second mobile communication device. The network device remotely enables, from the network device, the first mobile communication device and the second mobile communication device to transfer data between them via the local wireless connectivity method instead of via the cellular network based on the determined network proximity or geographic proximity.
    • 网络设备经由蜂窝网络从第一移动通信设备接收消息以尝试通过本地无线连接方法启动数据传输的建立。 网络设备相对于作为数据传输的目标的第二移动通信设备确定第一移动通信设备的蜂窝网络内的接近度,并且确定第一移动通信设备相对于第二移动站的地理距离 通讯装置 网络设备从网络设备远程地使得第一移动通信设备和第二移动通信设备能够经由本地无线连接方法而不是基于所确定的网络接近度或地理接近度经由蜂窝网络来在它们之间传输数据。
    • 2. 发明申请
    • CELLULAR NETWORK TRAFFIC OFFLOAD VIA LOCAL WIRELESS CONNECTIVITY
    • 通过本地无线连接进行细线网络通信
    • US20120322480A1
    • 2012-12-20
    • US13164318
    • 2011-06-20
    • Scott J. HooverPaul V. HubnerGary L. CampbellJoseph A. Hilburn
    • Scott J. HooverPaul V. HubnerGary L. CampbellJoseph A. Hilburn
    • H04B7/24
    • H04W76/14
    • A network device receives, from a first mobile communication device via a cellular network, a message to attempt initiate the set-up of data transfer via a local wireless connectivity method. The network device determines a proximity within the cellular network of the first mobile communication device with respect to a second mobile communication device that is the target of the data transfer, and determines a geographic proximity of the first mobile communication device with respect to the second mobile communication device. The network device remotely enables, from the network device, the first mobile communication device and the second mobile communication device to transfer data between them via the local wireless connectivity method instead of via the cellular network based on the determined network proximity or geographic proximity.
    • 网络设备经由蜂窝网络从第一移动通信设备接收消息以尝试通过本地无线连接方法启动数据传输的建立。 网络设备相对于作为数据传输的目标的第二移动通信设备确定第一移动通信设备的蜂窝网络内的接近度,并且确定第一移动通信设备相对于第二移动站的地理距离 通讯装置 网络设备从网络设备远程地使得第一移动通信设备和第二移动通信设备能够经由本地无线连接方法而不是基于所确定的网络接近度或地理接近度经由蜂窝网络来在它们之间传输数据。
    • 5. 发明申请
    • DISTRIBUTING CUSTOMER LOCATION ACCESS LINKS ACROSS NETWORK PROVIDER NODES DURING NETWORK PLANNING
    • 在网络规划期间分配客户位置访问链接网络提供者节点
    • US20100150028A1
    • 2010-06-17
    • US12333512
    • 2008-12-12
    • Gary L. CampbellPaul Hubner
    • Gary L. CampbellPaul Hubner
    • H04L12/56
    • H04L41/145H04L12/2852H04L12/2854H04L67/1002H04L67/1021H04W4/02H04W28/08H04W48/20
    • A computing-device implemented network planning process distributes access links associated with customer locations to selected nodes of a provider network. The network planning process distributes the access links associated with the customer locations to the selected nodes of provider network such that overall latency goals for the network are met and such that the density of the connected customer locations to the network nodes in the network satisfy density requirements. The network planning process seeks diversity in customer location assignments by creating additional capacity through the re-assignment of customer locations to alternate network nodes in order to free up space on network nodes needed to off-load customer locations from other over-loaded network nodes. The network planning process permits an expanded ring of network nodes to accommodate dense customer traffic load across a wide area while meeting both individual connection and overall system requirements.
    • 计算设备实现的网络规划过程将与客户位置相关联的接入链路分配给提供商网络的选定节点。 网络规划过程将与客户位置相关联的接入链路分配给供应商网络的所选节点,使得满足网络的总体延迟目标,并且使得网络中网络节点的连接的客户位置的密度满足密度要求 。 网络规划过程通过通过将客户位置重新分配到备用网络节点来创建额外的容量来寻求客户位置分配的多样性,以便释放出将客户位置从其他过载网络节点卸载所需的网络节点上的空间。 网络规划过程允许扩展的网络节点环以在广泛的区域满足密集的客户流量负载,同时满足个人连接和整个系统要求。
    • 9. 发明授权
    • Method and system for network backbone analysis
    • 网络骨干分析方法与系统
    • US08395989B2
    • 2013-03-12
    • US12108233
    • 2008-04-23
    • Gary L. CampbellOommen Mathews
    • Gary L. CampbellOommen Mathews
    • H04L1/00
    • H04L41/12H04L41/069H04L45/123H04L45/125H04L45/22H04L45/28
    • A method and system of an embodiment may include receiving network path information identifying one or more network paths, receiving network traffic information specifying a network ingress and a network egress for the network traffic on a first network path of the one or more identified network paths and the network traffic information specifying one or more attributes of the network traffic, emulating failure of one or more components of the first network path, determining a second network path between the specified network ingress and the specified network egress to accommodate the network traffic from the first network path, and providing information associated with the second network path.
    • 实施例的方法和系统可以包括接收标识一个或多个网络路径的网络路径信息,接收指定网络入口的网络业务信息和针对所述一个或多个识别的网络路径的第一网络路径上的网络流量的网络出口,以及 所述网络流量信息指定所述网络流量的一个或多个属性,模拟所述第一网络路径的一个或多个组件的故障,确定所述指定的网络入口与所述指定的网络出口之间的第二网络路径,以适应来自所述第一网络流量的所述网络流量 网络路径,以及提供与第二网络路径相关联的信息。
    • 10. 发明授权
    • Method and system for identifying network paths
    • 识别网络路径的方法和系统
    • US08155026B2
    • 2012-04-10
    • US12208414
    • 2008-09-11
    • Gary L. CampbellOommen Mathews
    • Gary L. CampbellOommen Mathews
    • G01R31/08
    • H04L45/121H04L41/0233H04L41/12H04L43/0852H04L45/12H04L45/122H04L45/124
    • A method and system of an embodiment may include receiving network information associated with one or more network links, one or more network nodes, and a network hub, identifying at least two network paths from at least one of the one or more network nodes to the network hub based on the network information. Identifying at least two network paths from at least one of the one or more network nodes to the network hub based on the network information may include determining a number of hops for each identified network path, determining a latency of each link for each identified network path, summing the latencies of each link for each identified network path to calculate a total network path latency, and determining a ranking of the network paths based at least in part on the number of hops and the total network path latency.
    • 实施例的方法和系统可以包括接收与一个或多个网络链路相关联的网络信息,一个或多个网络节点和网络集线器,以识别从一个或多个网络节点中的至少一个到至少一个网络节点的至少两个网络路径 网络集线器基于网络信息。 基于所述网络信息来识别从所述一个或多个网络节点中的至少一个到所述网络集线器的至少两个网络路径可以包括确定每个所识别的网络路径的跳数,确定每个所识别的网络路径的每个链路的等待时间 对每个确定的网络路径的每个链路的延迟进行求和,以计算总的网络路径等待时间,以及至少部分地基于跳数和总的网络路径等待时间来确定网络路径的等级。