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    • 1. 发明授权
    • Back pressure remediation
    • 背压补救
    • US09391849B2
    • 2016-07-12
    • US12614286
    • 2009-11-06
    • Vineet AbrahamSathish GnanasekaranRishi SinhaBadrinath Kollu
    • Vineet AbrahamSathish GnanasekaranRishi SinhaBadrinath Kollu
    • H04L12/24H04L12/801H04L12/825
    • H04L41/5025H04L47/11H04L47/26
    • Back pressure is mapped within a network, and primary bottlenecks are distinguished from dependent bottlenecks. Further, the presently disclosed technology is capable of performing network healing operations designed to reduce the data load on primary bottlenecks while ignoring dependent bottlenecks. Still further, the presently disclosed technology teaches identifying and/or suggesting a switch port for adding a node to the network. More specifically, various implementations analyze traffic load and back pressure in a network, identify primary and dependent bottlenecks, resolve the primary bottlenecks, collect new node parameters, and/or select a switch port for the new node. Further, a command can be sent to a selected switch to activate an indicator on the selected port. New node parameters may include new node type, maximum load, minimum load, time of maximum load, time of minimum load and type of data associated with the new node.
    • 背压被映射到网络中,主要瓶颈与依赖瓶颈不同。 此外,目前公开的技术能够执行设计用于减少主要瓶颈上的数据负载的网络恢复操作,同时忽略依赖的瓶颈。 此外,本公开的技术教导了识别和/或建议用于将节点添加到网络的交换机端口。 更具体地,各种实现分析网络中的业务负载和背压,识别主要和相关瓶颈,解决主要瓶颈,收集新节点参数和/或为新节点选择交换机端口。 此外,可以向所选择的交换机发送命令以激活所选端口上的指示符。 新节点参数可以包括新节点类型,最大负载,最小负载,最大负载时间,最小负载时间和与新节点相关联的数据类型。
    • 3. 发明申请
    • BACK PRESSURE REMEDIATION
    • 返回压力补救
    • US20110110232A1
    • 2011-05-12
    • US12614286
    • 2009-11-06
    • Vineet AbrahamSathish GnanasekaranRishi SinhaBadrinath Kollu
    • Vineet AbrahamSathish GnanasekaranRishi SinhaBadrinath Kollu
    • H04L12/56
    • H04L41/5025H04L47/11H04L47/26
    • Back pressure is mapped within a network, and primary bottlenecks are distinguished from dependent bottlenecks. Further, the presently disclosed technology is capable of performing network healing operations designed to reduce the data load on primary bottlenecks while ignoring dependent bottlenecks. Still further, the presently disclosed technology teaches identifying and/or suggesting a switch port for adding a node to the network. More specifically, various implementations analyze traffic load and back pressure in a network, identify primary and dependent bottlenecks, resolve the primary bottlenecks, collect new node parameters, and/or select a switch port for the new node. Further, a command can be sent to a selected switch to activate an indicator on the selected port. New node parameters may include new node type, maximum load, minimum load, time of maximum load, time of minimum load and type of data associated with the new node.
    • 背压被映射到网络中,主要瓶颈与依赖瓶颈不同。 此外,目前公开的技术能够执行设计用于减少主要瓶颈上的数据负载的网络恢复操作,同时忽略依赖的瓶颈。 此外,本公开的技术教导了识别和/或建议用于将节点添加到网络的交换机端口。 更具体地,各种实现分析网络中的业务负载和背压,识别主要和相关瓶颈,解决主要瓶颈,收集新节点参数和/或为新节点选择交换机端口。 此外,可以向所选择的交换机发送命令以激活所选端口上的指示符。 新节点参数可以包括新节点类型,最大负载,最小负载,最大负载时间,最小负载时间和与新节点相关联的数据类型。
    • 9. 发明授权
    • Transit switches in a network of logical switches
    • 逻辑交换机网络中的交换机
    • US08599864B2
    • 2013-12-03
    • US12575610
    • 2009-10-08
    • Daniel Ji Yong Park ChungBadrinath KolluSathish Kumar Gnanasekaran
    • Daniel Ji Yong Park ChungBadrinath KolluSathish Kumar Gnanasekaran
    • H04W4/00H04L12/28
    • H04L45/586H04L45/583H04L49/357H04L67/1097
    • A Layer 2 network switch is partitionable into a plurality of switch fabrics. The single-chassis switch is partitionable into a plurality of logical switches, each associated with one of the virtual fabrics. The logical switches behave as complete and self-contained switches. A logical switch fabric can span multiple single-chassis switch chassis. Logical switches are connected by inter-switch links that can be either dedicated single-chassis links or logical links. An extended inter-switch link can be used to transport traffic for one or more logical inter-switch links. Physical ports of the chassis are assigned to logical switches and are managed by the logical switch. Legacy switches that are not partitionable into logical switches can serve as transit switches between two logical switches.
    • 二层网络交换机可分割成多个交换结构。 单机箱交换机可分割成多个逻辑交换机,每个逻辑交换机与虚拟结构之一相关联。 逻辑交换机表现为完整和自包含的交换机。 逻辑交换矩阵可以跨多个单机箱交换机机箱。 逻辑交换机通过可以是专用单机箱链路或逻辑链路的交换机间链路连接。 可以使用扩展的交换机间链路来传输一个或多个逻辑交换机间链路的业务。 机箱的物理端口分配给逻辑交换机,由逻辑交换机管理。 不可分割到逻辑交换机的旧式交换机可以用作两个逻辑交换机之间的转接交换机。