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    • 1. 发明授权
    • Managing captured network traffic data
    • 管理捕获的网络流量数据
    • US08140665B2
    • 2012-03-20
    • US11507114
    • 2006-08-19
    • Patrick J. MalloyMichael S. CanneyRyan GehlMarc A. CohenEric S. NudelmanRussell Mark ElsnerMarc I. Schneider
    • Patrick J. MalloyMichael S. CanneyRyan GehlMarc A. CohenEric S. NudelmanRussell Mark ElsnerMarc I. Schneider
    • G06F15/173
    • H04L43/0823H04L43/00H04L43/106
    • A system and method for managing captured network traffic data is provided. The invention comprises a plurality of capture agents, each being configured to capture the network traffic associated with one or more applications. Each application is associated with one or more capture agents according to an application profile that is stored and maintained in a capture server. When analysis of an application's network traffic is required, the capture server contacts the corresponding capture agents according to the application profile. The capture server then effects the identification and archiving of the network traffic that corresponds to a user-defined capture condition. A database at the capture server maintains a record that associates the corresponding network traffic with the user-defined capture condition such that the corresponding network traffic can later be retrieved and analyzed using an analysis engine.
    • 提供了一种用于管理捕获的网络流量数据的系统和方法。 本发明包括多个捕获剂,每个捕获剂被配置为捕获与一个或多个应用相关联的网络流量。 每个应用程序根据存储和维护在捕获服务器中的应用程序配置文件与一个或多个捕获程序相关联。 当需要分析应用程序的网络流量时,捕获服务器将根据应用程序配置文件与相应的捕获代理进行联系。 然后,捕获服务器对与用户定义的捕获条件相对应的网络流量进行识别和归档。 捕获服务器上的数据库维护一个记录,将相应的网络流量与用户定义的捕获条件相关联,以便随后可以使用分析引擎检索和分析相应的网络流量。
    • 3. 发明授权
    • Application delay analysis
    • 应用延迟分析
    • US07885200B2
    • 2011-02-08
    • US11397359
    • 2006-04-04
    • Russell Mark ElsnerJohn Wilson StrohmMichael S. Canney
    • Russell Mark ElsnerJohn Wilson StrohmMichael S. Canney
    • H04L12/26
    • H04L43/0852H04L43/045H04L67/36
    • A graphic user interface facilitates the hierarchical analysis of timing parameters related to network-based applications. At the top level of the hierarchy, the user is presented a summary of the delays incurred while running an application, or while simulating the running of an application, organized by delay categories, including processing delays at each node, as well as propagation delays at each link between nodes. The interface enables a user to “drill down” into lower levels of the timing information hierarchy by ‘clicking’ on currently displayed information. The information is presented in a form most appropriate to the level of analysis. The presentation forms include, for example, pie-charts, multi-variable timing diagrams (in both absolute and relative forms), data exchange charts, and so on, and ‘zoom’ capabilities are provided as appropriate to the particular display form.
    • 图形用户界面便于与基于网络的应用相关的定时参数的分层分析。 在层次结构的顶层,用户被呈现在运行应用程序时产生的延迟,或模拟应用程序的运行情况的汇总,这些延迟类别由延迟类别组成,包括每个节点处的处理延迟,以及传播延迟 节点之间的每个链接。 该接口使用户能够通过“点击”当前显示的信息“向下钻取”到较低级别的定时信息层级。 信息以最适合于分析水平的形式呈现。 演示表格包括例如饼图,多变量时序图(绝对和相对形式),数据交换图表等,并且适当地提供特定显示形式的“缩放”能力。