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    • 61. 发明授权
    • Network fingerprinting
    • 网络指纹识别
    • US07448070B2
    • 2008-11-04
    • US10688656
    • 2003-10-17
    • Warren V. BarkleyVivek BhanuSean LyndersayTimothy M. MooreYinghua Yao
    • Warren V. BarkleyVivek BhanuSean LyndersayTimothy M. MooreYinghua Yao
    • G06F17/30
    • H04L63/08H04L63/105H04L63/1433
    • A network fingerprinting component for a computerized system issues network identifiers (NID) for computer networks. Identity confidences may be determined for each issued network identifier with respect to current computer networks. Computer network attributes may include passive network attributes and active network attributes. Retrieving values for active network attributes involves generating network traffic. As a result passive network attributes may be available to the network fingerprinting component before active network attributes. Learned identity confidence modifiers may be applied to identity confidences determined independent of active network attributes to achieve more accurate identity confidence sooner. Better learned identity confidence modifiers may be obtained by comparing identity confidences for a particular computer network determined independently of active network attributes with identity confidences for the computer network determined once active network attributes become available and then adjusting the learned identity confidence modifiers so as to minimize any differences.
    • 计算机化系统的网络指纹识别组件发布计算机网络的网络标识符(NID)。 可以针对当前的计算机网络为每个已发布的网络标识符确定身份信息。 计算机网络属性可能包括被动网络属性和活动网络属性。 检索活动网络属性的值涉及生成网络流量。 因此,无源网络属性可能在活动网络属性之前可用于网络指纹分析。 学习的身份信任修饰符可以应用于独立于活动网络属性确定的身份信息,以更快地实现更准确的身份信任。 可以通过将一个独立于活动网络属性确定的特定计算机网络的身份信息与一旦活动网络属性变为可用时确定的计算机网络的身份信息进行比较,然后调整所学习的身份置信度修饰符,从而最小化任何 差异
    • 66. 发明授权
    • Virtual contact identifier
    • 虚拟联系人标识符
    • US09241078B2
    • 2016-01-19
    • US11770588
    • 2007-06-28
    • Scott C. ForbesRoss CutlerTimothy M. MooreJeremy T. BuchAnthony J. Bawcutt
    • Scott C. ForbesRoss CutlerTimothy M. MooreJeremy T. BuchAnthony J. Bawcutt
    • H04L12/26H04L12/66H04M15/06
    • H04M15/06
    • The claimed subject matter provides a system and/or a method that facilitates enhancing connectivity associated with data communications. An interface can receive a portion of communication state data, wherein the communication state data is related to at least one of a data communication mode and a user context state. A routing component can evaluate the portion of communication state data to identify an optimized data communication mode, wherein the optimized data communication mode is dynamically linked to a virtual contact identifier. Moreover, the routing component can automatically and seamlessly employ an optimized communication session utilizing the dynamically identified optimized data communication mode based upon an activation of the virtual contact identifier.
    • 所要求保护的主题提供了有助于增强与数据通信相关联的连接的系统和/或方法。 接口可以接收通信状态数据的一部分,其中通信状态数据与数据通信模式和用户上下文状态中的至少一个有关。 路由组件可以评估通信状态数据的部分以识别优化的数据通信模式,其中优化的数据通信模式动态地链接到虚拟联系人标识符。 此外,基于虚拟联系人标识符的激活,路由组件可以利用动态识别的优化数据通信模式自动且无缝地使用优化的通信会话。
    • 67. 发明授权
    • Adaptive bandwidth estimation
    • 自适应带宽估计
    • US09215157B2
    • 2015-12-15
    • US13288968
    • 2011-11-04
    • Tin QianJin LiTanner M. HodgesonSanjeev MehrotraJiannan ZhengTimothy M. Moore
    • Tin QianJin LiTanner M. HodgesonSanjeev MehrotraJiannan ZhengTimothy M. Moore
    • H04J3/16H04L12/26
    • H04L43/0829H04L43/0852H04L43/16
    • It can be determined whether relative one way delay for data packets in a data stream exceeds a delay threshold. If so, then a delay congestion signal indicating that the relative one way delay exceeds the delay threshold can be generated. The delay congestion signal can be used in calculating an adaptive bandwidth estimate for the data stream. A packet loss rate congestion signal may also be used in calculating the bandwidth estimate. It can be determined whether a data stream of data packets is in a contention state. If the data stream is in the contention state, then an adaptive bandwidth estimate can be calculated for the data stream using a first bandwidth estimation technique. If the data stream is not in the contention state, then the bandwidth estimate for the data stream can be calculated using a second bandwidth estimation technique.
    • 可以确定数据流中的数据分组的相对单向延迟是否超过延迟阈值。 如果是,则可以产生指示相对单向延迟超过延迟阈值的延迟拥塞信号。 延迟拥塞信号可用于计算数据流的自适应带宽估计。 丢包率拥塞信号也可用于计算带宽估计。 可以确定数据包的数据流是否处于争用状态。 如果数据流处于竞争状态,则可以使用第一带宽估计技术对数据流计算自适应带宽估计。 如果数据流不处于竞争状态,则可以使用第二带宽估计技术来计算数据流的带宽估计。