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    • 5. 发明授权
    • Rogue AP detection
    • 盗贼AP检测
    • US07181530B1
    • 2007-02-20
    • US09917122
    • 2001-07-27
    • David E. HalaszMerwyn B. Andrade
    • David E. HalaszMerwyn B. Andrade
    • G06F15/173
    • H04L63/0869H04W12/02H04W12/06H04W12/12H04W88/08
    • A method of detecting a rogue access point is disclosed. A message is directed from a supplicant to a network through an access point. A network response message is received by the supplicant from the access point. A step of determining whether the access point is one of a valid network access point and a rogue access point is performed based on whether the received network response message is respectively in conformity or nonconformity with predetermined expectations. If the access point is determined to be a rogue access point, it is reported to the network. If the access point is determined to be a valid network access point, the supplicant is authenticated to the network.
    • 公开了一种检测流氓接入点的方法。 消息通过接入点从请求者发送到网络。 请求方从接入点接收到网络响应消息。 基于接收到的网络响应消息是否与预定期望一致或不一致来确定接入点是否是有效网络接入点和恶意接入点之一的步骤。 如果接入点被确定为流氓接入点,则将其报告给网络。 如果接入点被确定为有效的网络接入点,则向网络认证请求者。
    • 8. 发明授权
    • Fast convergence with topology switching
    • 与拓扑切换快速收敛
    • US06678241B1
    • 2004-01-13
    • US09452344
    • 1999-11-30
    • Silvano GaiKeith McCloghrieMerwyn B. Andrade
    • Silvano GaiKeith McCloghrieMerwyn B. Andrade
    • G01R3108
    • H04L12/462H04L12/4641H04L12/465H04L41/06H04L41/0663
    • A system for rapidly switching at least one virtual local area network (VLAN) from a first loop-free topology to a second loop-free topology in response to a failure within the first loop-free topology. Each VLAN has one “logical” VLAN which represents the network entities organized into the VLAN and a set of “physical” VLANs each having its own VLAN designation. For each physical VLAN, a different loop-free topology is defined, although only one physical VLAN is “active” at any given time. Messages associated with the logical VLAN are tagged with the designation of the currently active physical VLAN, and forwarded along its loop-free topology. Upon detecting a failure in the loop-free topology, the logical VLAN is rapidly switched to the loop-free topology defined by a second, back-up physical VLAN. Following the switch messages associated with the logical VLAN are tagged with the designation of this back-up VLAN and are forwarded along its loop-free topology.
    • 用于响应于第一无环路拓扑中的故障,将至少一个虚拟局域网(VLAN)从第一环无拓扑拓扑快速切换到第二无环路拓扑的系统。 每个VLAN都有一个“逻辑”VLAN,它表示组织在VLAN中的网络实体和一组“物理”VLAN,每个VLAN都有自己的VLAN名称。 对于每个物理VLAN,定义了不同的无环路拓扑,尽管在任何给定时间只有一个物理VLAN“活动”。 与逻辑VLAN相关联的消息被标记为当前活动的物理VLAN的指定,并沿其无环路拓扑转发。 检测到无环路拓扑故障时,逻辑VLAN将迅速切换到第二个备份物理VLAN所定义的无环路拓扑。 跟随与逻辑VLAN相关联的交换机消息标记该备份VLAN的指定,并沿其无环路拓扑转发。
    • 10. 发明授权
    • Fast convergence with topology switching
    • 与拓扑切换快速收敛
    • US07428237B1
    • 2008-09-23
    • US10752341
    • 2004-01-06
    • Silvano GaiKeith McCloghrieMerwyn B. Andrade
    • Silvano GaiKeith McCloghrieMerwyn B. Andrade
    • H04L12/28H04L12/56H04L12/26G06F15/16G06F15/173
    • H04L12/462H04L12/4641H04L12/465H04L41/06H04L41/0663
    • A system for rapidly switching at least one virtual local area network (VLAN) from a first loop-free topology to a second loop-free topology in response to a failure within the first loop-free topology. Each VLAN has one “logical” VLAN which represents the network entities organized into the VLAN and a set of “physical” VLANs each having its own VLAN designation. For each physical VLAN, a different loop-free topology is defined, although only one physical VLAN is “active” at any given time. Messages associated with the logical VLAN are tagged with the designation of the currently active physical VLAN, and forwarded along its loop-free topology. Upon detecting a failure in the loop-free topology, the logical VLAN is rapidly switched to the loop-free topology defined by a second, back-up physical VLAN. Following the switch, messages associated with the logical VLAN are tagged with the designation of this back-up VLAN and are forwarded along its loop-free topology.
    • 用于响应于第一无环路拓扑中的故障,将至少一个虚拟局域网(VLAN)从第一环无拓扑拓扑快速切换到第二无环路拓扑的系统。 每个VLAN都有一个“逻辑”VLAN,它表示组织在VLAN中的网络实体和一组“物理”VLAN,每个VLAN都有自己的VLAN名称。 对于每个物理VLAN,定义了不同的无环路拓扑,尽管在任何给定时间只有一个物理VLAN“活动”。 与逻辑VLAN相关联的消息被标记为当前活动的物理VLAN的指定,并沿其无环路拓扑转发。 检测到无环路拓扑故障时,逻辑VLAN将迅速切换到第二个备份物理VLAN所定义的无环路拓扑。 切换后,与逻辑VLAN相关联的消息将被标记为该备份VLAN的指定,并沿其无环路拓扑转发。