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    • 1. 发明授权
    • Identification of the configuration topology, existing switches, and miswires in a switched network
    • 识别交换网络中的配置拓扑,现有交换机和误连线
    • US07855980B2
    • 2010-12-21
    • US12367611
    • 2009-02-09
    • LeRoy R. LundinCasandra H. QiuAruna V. Ramanan
    • LeRoy R. LundinCasandra H. QiuAruna V. Ramanan
    • H04L12/28
    • H04L49/15
    • An exemplary method of identifying configuration topology, existing switches, and miswires in a given network is provided. Given a number of switches, which may be less than the maximum possible for the actual configuration and some ports of which may be miswired, generate a hypothesis for the supported topology of which the existing configuration is a subset. A best fit of the existing switches to the supported number switches of the maximal topology is performed, using formulae for the connections of the maximal supported topology. If supported switches are found missing in the assumed topology, the switch count is increased accordingly, and started over with a new hypothesis. When satisfied with identification, all switch ports are revisited and the connection formulae is used to identify all miswires.
    • 提供了在给定网络中识别配置拓扑,现有交换机和误接线的示例性方法。 给定多个交换机,其可能小于实际配置的最大可能性,并且其某些端口可能被误接线,为支持的拓扑生成假设,其中现有配置是子集。 使用最大支持拓扑的连接公式,实现现有交换机对最大拓扑支持的数字交换机的最佳拟合。 如果在假定的拓扑中发现缺少支持的交换机,则交换机计数相应增加,并以新的假设开始。 当识别满足时,重新访问所有交换机端口,并使用连接公式来识别所有的误接线。
    • 2. 发明授权
    • Identification of the configuration topology, existing switches, and miswires in a switched network
    • 识别交换网络中的配置拓扑,现有交换机和误连线
    • US07522541B2
    • 2009-04-21
    • US10962635
    • 2004-10-11
    • LeRoy R. LundinCasandra H. QiuAruna V. Ramanan
    • LeRoy R. LundinCasandra H. QiuAruna V. Ramanan
    • H04L12/28
    • H04L49/15
    • An exemplary method of identifying configuration topology, existing switches, and miswires in a given network is provided. Given a number of switches, which may be less than the maximum possible for the actual configuration and some ports of which may be miswired, generate a hypothesis for the supported topology of which the existing configuration is a subset. Perform a best fit of the existing switches to the supported number switches of the maximal topology, using formulae for the connections of the maximal supported topology. If supported switches are found missing in the assumed topology, increase the switch count accordingly, and start over with a new hypothesis. When satisfied with identification, revisit all switch ports and use the connection formulae to identify all miswires.
    • 提供了在给定网络中识别配置拓扑,现有交换机和误接线的示例性方法。 给定多个交换机,其可能小于实际配置的最大可能性,并且其某些端口可能被误接线,为支持的拓扑生成假设,其中现有配置是子集。 使用最大支持拓扑的连接公式,将现有交换机的最佳配置与最大拓扑支持的数字交换机配合使用。 如果在假定的拓扑中发现支持的交换机丢失,则相应地增加交换机数量,并重新开始一个新的假设。 当满足识别时,重新访问所有交换机端口,并使用连接公式来识别所有的误接线。
    • 3. 发明申请
    • IDENTIFICATION OF THE CONFIGURATION TOPOLOGY, EXISTING SWITCHES, AND MISWIRES IN A SWITCHED NETWORK
    • 识别开关网络中的配置拓扑,现有开关和错误
    • US20090141643A1
    • 2009-06-04
    • US12367611
    • 2009-02-09
    • LeRoy R. LundinCasandra H. QiuAruna V. Ramanan
    • LeRoy R. LundinCasandra H. QiuAruna V. Ramanan
    • H04J3/14H04L12/28
    • H04L49/15
    • An exemplary method of identifying configuration topology, existing switches, and miswires in a given network is provided. Given a number of switches, which may be less than the maximum possible for the actual configuration and some ports of which may be miswired, generate a hypothesis for the supported topology of which the existing configuration is a subset. A best fit of the existing switches to the supported number switches of the maximal topology is performed, using formulae for the connections of the maximal supported topology. If supported switches are found missing in the assumed topology, the switch count is increased accordingly, and started over with a new hypothesis. When satisfied with identification, all switch ports are revisited and the connection formulae is used to identify all miswires.
    • 提供了在给定网络中识别配置拓扑,现有交换机和误接线的示例性方法。 给定多个交换机,其可能小于实际配置的最大可能性,并且其某些端口可能被误接线,为支持的拓扑生成假设,其中现有配置是子集。 使用最大支持拓扑的连接公式,实现现有交换机对最大拓扑支持的数字交换机的最佳拟合。 如果在假定的拓扑中发现缺少支持的交换机,则交换机计数相应增加,并以新的假设开始。 当识别满足时,重新访问所有交换机端口,并使用连接公式来识别所有的误接线。