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    • 1. 发明授权
    • Identifying related network traffic data for monitoring and analysis
    • 识别相关网络流量数据进行监控和分析
    • US09049216B2
    • 2015-06-02
    • US13415823
    • 2012-03-08
    • Steven McCanneLoris Degioanni
    • Steven McCanneLoris Degioanni
    • H04L12/26H04L29/08H04L29/06
    • H04L43/022H04L43/026H04L43/04H04L43/10H04L43/12H04L63/30H04L67/1097Y02D50/30
    • Network traffic information from multiple sources, at multiple time scales, and at multiple levels of detail are integrated so that users may more easily identify relevant network information. The network monitoring system stores and manipulates low-level and higher-level network traffic data separately to enable efficient data collection and storage. Packet traffic data is collected, stored, and analyzed at multiple locations. The network monitoring locations communicate summary and aggregate data to central modules, which combine this data to provide an end-to-end description of network traffic at coarser time scales. The network monitoring system enables users to zoom in on high-level, coarse time scale network performance data to one or more lower levels of network performance data at finer time scales. When high-level network performance data of interest is selected, corresponding low-level network performance data is retrieved from the appropriate distributed network monitoring locations to provide additional detailed information.
    • 集成来自多个源,多个时间尺度和多个细节级别的网络流量信息,以便用户可以更容易地识别相关的网络信息。 网络监控系统分别存储和操纵低级别和更高级别的网络流量数据,以实现有效的数据收集和存储。 在多个位置收集,存储和分析数据包流量数据。 网络监控位置将汇总和汇总数据传送到中央模块,将这些数据组合在一起,以更粗糙的时间尺度提供端到端的网络流量描述。 网络监控系统使用户能够在更精细的时间尺度上将高级,粗糙的时间尺度网络性能数据放大到一个或多个较低级别的网络性能数据。 当选择感兴趣的高级网络性能数据时,从适当的分布式网络监控位置检索相应的低级网络性能数据,以提供额外的详细信息。
    • 2. 发明申请
    • Multilevel Monitoring System Architecture
    • 多层次监控系统架构
    • US20130064096A1
    • 2013-03-14
    • US13415815
    • 2012-03-08
    • Loris DegioanniSteven McCanneChristopher J. WhiteDmitri S. Vlachos
    • Loris DegioanniSteven McCanneChristopher J. WhiteDmitri S. Vlachos
    • H04L12/26
    • H04L43/022H04L43/026H04L43/04H04L43/10H04L43/12H04L63/30H04L67/1097Y02D50/30
    • Network traffic information from multiple sources, at multiple time scales, and at multiple levels of detail are integrated so that users may more easily identify relevant network information. The network monitoring system stores and manipulates low-level and higher-level network traffic data separately to enable efficient data collection and storage. Packet traffic data is collected, stored, and analyzed at multiple locations. The network monitoring locations communicate summary and aggregate data to central modules, which combine this data to provide an end-to-end description of network traffic at coarser time scales. The network monitoring system enables users to zoom in on high-level, coarse time scale network performance data to one or more lower levels of network performance data at finer time scales. When high-level network performance data of interest is selected, corresponding low-level network performance data is retrieved from the appropriate distributed network monitoring locations to provide additional detailed information.
    • 集成来自多个源,多个时间尺度和多个细节级别的网络流量信息,以便用户可以更容易地识别相关的网络信息。 网络监控系统分别存储和操纵低级别和更高级别的网络流量数据,以实现有效的数据收集和存储。 在多个位置收集,存储和分析数据包流量数据。 网络监控位置将汇总和汇总数据传送到中央模块,将这些数据组合在一起,以更粗糙的时间尺度提供端到端的网络流量描述。 网络监控系统使用户能够在更精细的时间尺度上将高级,粗糙的时间尺度网络性能数据放大到一个或多个较低级别的网络性能数据。 当选择感兴趣的高级网络性能数据时,从适当的分布式网络监控位置检索相应的低级网络性能数据,以提供额外的详细信息。
    • 3. 发明授权
    • Multilevel network monitoring system architecture
    • 多层次网络监控系统架构
    • US09036493B2
    • 2015-05-19
    • US13415815
    • 2012-03-08
    • Loris DegioanniSteven McCanneChristopher J. WhiteDmitri S. Vlachos
    • Loris DegioanniSteven McCanneChristopher J. WhiteDmitri S. Vlachos
    • H04L12/26H04L29/08H04L29/06
    • H04L43/022H04L43/026H04L43/04H04L43/10H04L43/12H04L63/30H04L67/1097Y02D50/30
    • Network traffic information from multiple sources, at multiple time scales, and at multiple levels of detail are integrated so that users may more easily identify relevant network information. The network monitoring system stores and manipulates low-level and higher-level network traffic data separately to enable efficient data collection and storage. Packet traffic data is collected, stored, and analyzed at multiple locations. The network monitoring locations communicate summary and aggregate data to central modules, which combine this data to provide an end-to-end description of network traffic at coarser time scales. The network monitoring system enables users to zoom in on high-level, coarse time scale network performance data to one or more lower levels of network performance data at finer time scales. When high-level network performance data of interest is selected, corresponding low-level network performance data is retrieved from the appropriate distributed network monitoring locations to provide additional detailed information.
    • 集成来自多个源,多个时间尺度和多个细节级别的网络流量信息,以便用户可以更容易地识别相关的网络信息。 网络监控系统分别存储和操纵低级别和更高级别的网络流量数据,以实现有效的数据收集和存储。 在多个位置收集,存储和分析数据包流量数据。 网络监控位置将汇总和汇总数据传送到中央模块,将这些数据组合在一起,以更粗糙的时间尺度提供端到端的网络流量描述。 网络监控系统使用户能够在更精细的时间尺度上将高级,粗糙的时间尺度网络性能数据放大到一个或多个较低级别的网络性能数据。 当选择感兴趣的高级网络性能数据时,从适当的分布式网络监控位置检索相应的低级网络性能数据,以提供额外的详细信息。
    • 4. 发明授权
    • Distributed network traffic data collection and storage
    • 分布式网络流量数据收集和存储
    • US08971196B2
    • 2015-03-03
    • US13415819
    • 2012-03-08
    • Loris DegioanniSteven McCanneChristopher J. WhiteDimitri S. Vlachos
    • Loris DegioanniSteven McCanneChristopher J. WhiteDimitri S. Vlachos
    • H04L12/26H04L29/08H04L29/06
    • H04L43/022H04L43/026H04L43/04H04L43/10H04L43/12H04L63/30H04L67/1097Y02D50/30
    • Network traffic information from multiple sources, at multiple time scales, and at multiple levels of detail are integrated so that users may more easily identify relevant network information. The network monitoring system stores and manipulates low-level and higher-level network traffic data separately to enable efficient data collection and storage. Packet traffic data is collected, stored, and analyzed at multiple locations. The network monitoring locations communicate summary and aggregate data to central modules, which combine this data to provide an end-to-end description of network traffic at coarser time scales. The network monitoring system enables users to zoom in on high-level, coarse time scale network performance data to one or more lower levels of network performance data at finer time scales. When high-level network performance data of interest is selected, corresponding low-level network performance data is retrieved from the appropriate distributed network monitoring locations to provide additional detailed information.
    • 集成来自多个源,多个时间尺度和多个细节级别的网络流量信息,以便用户可以更容易地识别相关的网络信息。 网络监控系统分别存储和操纵低级别和更高级别的网络流量数据,以实现有效的数据收集和存储。 在多个位置收集,存储和分析数据包流量数据。 网络监控位置将汇总和汇总数据传送到中央模块,将这些数据组合在一起,以更粗糙的时间尺度提供端到端的网络流量描述。 网络监控系统使用户能够在更精细的时间尺度上将高级,粗糙的时间尺度网络性能数据放大到一个或多个较低级别的网络性能数据。 当选择感兴趣的高级网络性能数据时,从适当的分布式网络监控位置检索相应的低级网络性能数据,以提供额外的详细信息。
    • 5. 发明申请
    • Distributed Network Traffic Data Collection and Storage
    • 分布式网络流量数据收集和存储
    • US20130070622A1
    • 2013-03-21
    • US13415819
    • 2012-03-08
    • Loris DegioanniSteven McCanneChristopher J. WhiteDimitri S. Vlachos
    • Loris DegioanniSteven McCanneChristopher J. WhiteDimitri S. Vlachos
    • H04L12/26
    • H04L43/022H04L43/026H04L43/04H04L43/10H04L43/12H04L63/30H04L67/1097Y02D50/30
    • Network traffic information from multiple sources, at multiple time scales, and at multiple levels of detail are integrated so that users may more easily identify relevant network information. The network monitoring system stores and manipulates low-level and higher-level network traffic data separately to enable efficient data collection and storage. Packet traffic data is collected, stored, and analyzed at multiple locations. The network monitoring locations communicate summary and aggregate data to central modules, which combine this data to provide an end-to-end description of network traffic at coarser time scales. The network monitoring system enables users to zoom in on high-level, coarse time scale network performance data to one or more lower levels of network performance data at finer time scales. When high-level network performance data of interest is selected, corresponding low-level network performance data is retrieved from the appropriate distributed network monitoring locations to provide additional detailed information.
    • 集成来自多个源,多个时间尺度和多个细节级别的网络流量信息,以便用户可以更容易地识别相关的网络信息。 网络监控系统分别存储和操纵低级别和更高级别的网络流量数据,以实现有效的数据收集和存储。 在多个位置收集,存储和分析数据包流量数据。 网络监控位置将汇总和汇总数据传送到中央模块,将这些数据组合在一起,以更粗糙的时间尺度提供端到端的网络流量描述。 网络监控系统使用户能够在更精细的时间尺度上将高级,粗糙的时间尺度网络性能数据放大到一个或多个较低级别的网络性能数据。 当选择感兴趣的高级网络性能数据时,从适当的分布式网络监控位置检索相应的低级网络性能数据,以提供额外的详细信息。
    • 6. 发明申请
    • Identifying Related Network Traffic Data for Monitoring and Analysis
    • 识别相关网络流量数据进行监测和分析
    • US20130070608A1
    • 2013-03-21
    • US13415823
    • 2012-03-08
    • Steven McCanneLoris Degioanni
    • Steven McCanneLoris Degioanni
    • H04L12/26
    • H04L43/022H04L43/026H04L43/04H04L43/10H04L43/12H04L63/30H04L67/1097Y02D50/30
    • Network traffic information from multiple sources, at multiple time scales, and at multiple levels of detail are integrated so that users may more easily identify relevant network information. The network monitoring system stores and manipulates low-level and higher-level network traffic data separately to enable efficient data collection and storage. Packet traffic data is collected, stored, and analyzed at multiple locations. The network monitoring locations communicate summary and aggregate data to central modules, which combine this data to provide an end-to-end description of network traffic at coarser time scales. The network monitoring system enables users to zoom in on high-level, coarse time scale network performance data to one or more lower levels of network performance data at finer time scales. When high-level network performance data of interest is selected, corresponding low-level network performance data is retrieved from the appropriate distributed network monitoring locations to provide additional detailed information.
    • 集成来自多个源,多个时间尺度和多个细节级别的网络流量信息,以便用户可以更容易地识别相关的网络信息。 网络监控系统分别存储和操纵低级别和更高级别的网络流量数据,以实现有效的数据收集和存储。 在多个位置收集,存储和分析数据包流量数据。 网络监控位置将汇总和汇总数据传送到中央模块,将这些数据组合在一起,以更粗糙的时间尺度提供端到端的网络流量描述。 网络监控系统使用户能够在更精细的时间尺度上将高级,粗糙的时间尺度网络性能数据放大到一个或多个较低级别的网络性能数据。 当选择感兴趣的高级网络性能数据时,从适当的分布式网络监控位置检索相应的低级网络性能数据,以提供额外的详细信息。
    • 7. 发明申请
    • Accessing Network Traffic Data at Multiple Time Scales and Levels of Detail
    • 以多个时间尺度和细节级别访问网络流量数据
    • US20130067034A1
    • 2013-03-14
    • US13415821
    • 2012-03-08
    • Loris DegioanniSteven McCanneChristopher J. WhiteDimitri S. Vlachos
    • Loris DegioanniSteven McCanneChristopher J. WhiteDimitri S. Vlachos
    • G06F15/167
    • H04L43/022H04L43/026H04L43/04H04L43/10H04L43/12H04L63/30H04L67/1097Y02D50/30
    • Network traffic information from multiple sources, at multiple time scales, and at multiple levels of detail are integrated so that users may more easily identify relevant network information. The network monitoring system stores and manipulates low-level and higher-level network traffic data separately to enable efficient data collection and storage. Packet traffic data is collected, stored, and analyzed at multiple locations. The network monitoring locations communicate summary and aggregate data to central modules, which combine this data to provide an end-to-end description of network traffic at coarser time scales. The network monitoring system enables users to zoom in on high-level, coarse time scale network performance data to one or more lower levels of network performance data at finer time scales. When high-level network performance data of interest is selected, corresponding low-level network performance data is retrieved from the appropriate distributed network monitoring locations to provide additional detailed information.
    • 集成来自多个源,多个时间尺度和多个细节级别的网络流量信息,以便用户可以更容易地识别相关的网络信息。 网络监控系统分别存储和操纵低级别和更高级别的网络流量数据,以实现有效的数据收集和存储。 在多个位置收集,存储和分析数据包流量数据。 网络监控位置将汇总和汇总数据传送到中央模块,将这些数据组合在一起,以更粗糙的时间尺度提供端到端的网络流量描述。 网络监控系统使用户能够在更精细的时间尺度上将高级,粗糙的时间尺度网络性能数据放大到一个或多个较低级别的网络性能数据。 当选择感兴趣的高级网络性能数据时,从适当的分布式网络监控位置检索相应的低级网络性能数据,以提供额外的详细信息。
    • 9. 发明授权
    • Method and apparatus for scheduling a heterogeneous communication flow
    • 用于调度异构通信流的方法和装置
    • US08971345B1
    • 2015-03-03
    • US12729127
    • 2010-03-22
    • Steven McCanneLap Nathan TracAndrew Swan
    • Steven McCanneLap Nathan TracAndrew Swan
    • H04L12/54H04L12/851H04L12/18
    • H04L47/6215H04L12/1836H04L47/2441
    • A method and apparatus are provided for scheduling a heterogeneous communication flow. A heterogeneous flow is a flow comprising packets with varying classes or levels of service, which may correspond to different priorities, qualities of service or other service characteristics. When a packet is ready for scheduling, it is queued in order in a flow queue that corresponds to the communication flow. The flow queue then migrates among class queues that correspond to the class or level of service of the packet at the head of the flow queue. Thus, after the head packet is scheduled, the flow queue may be dequeued from its current class queue and requeued at the tail of another class queue. If the subsequent packet has the same classification, it may be requeued at the tail of the class queue or may remain in place for another servicing round.
    • 提供了一种用于调度异构通信流的方法和装置。 异构流是包括具有不同等级或级别的服务的分组的流,其可以对应于不同的优先级,服务质量或其他服务特征。 当一个数据包准备好进行调度时,它会在与通信流对应的流队列中排队。 然后,流队列在对应于在流队列的头部处的分组的类或服务级别的类队列之间迁移。 因此,在头分组被调度之后,流队列可以从其当前类队列出队并在另一队列的尾部重新排队。 如果后续分组具有相同的分类,则可以在类队列的尾部重新排列,或者可以保留在另一个维修周期的位置。
    • 10. 发明授权
    • Transaction accelerator for client-server communications systems
    • 客户端 - 服务器通信系统的事务加速器
    • US08762455B2
    • 2014-06-24
    • US13589896
    • 2012-08-20
    • Steven McCanneMichael J. Demmer
    • Steven McCanneMichael J. Demmer
    • G06F15/16
    • H04L67/2828H04L67/28H04L67/2852H04L67/288H04L67/289H04L69/329
    • For an accelerated transaction, a client directs a request to a client-side transaction handler that forwards the request to a server-side transaction handler, which in turn provides the request, or a representation thereof, to a server for responding to the request. The server sends the response to the client via the server-side transaction handler and the client-side transaction handler. When data is to be sent between handlers, the sending transaction handler compares data segments with segments stored in its persistent segment storage and replaces segments with references to entries in its persistent segment storage that match or closely match the segments to be replaced. The transaction accelerators could handle multiple clients and/or multiple servers and the segments stored in the persistent segment stores can relate to different transactions, different clients and/or different servers. Persistent segment stores can be prepopulated with segment data from other transaction accelerators.
    • 对于加速事务,客户端将请求引导到客户端事务处理程序,该处理程序将请求转发到服务器端事务处理程序,后者又将请求或其表示提供给服务器以响应请求。 服务器通过服务器端事务处理程序和客户端事务处理程序将响应发送给客户端。 当在处理程序之间发送数据时,发送事务处理程序将数据段与存储在其持久段存储中的段进行比较,并用与其持久段存储中与要替换的段匹配或紧密匹配的条目的引用来替换段。 交易加速器可以处理多个客户端和/或多个服务器,并且存储在持久性段存储中的段可以涉及不同的事务,不同的客户端和/或不同的服务器。 可以使用来自其他事务加速器的段数据预先存储持久性段存储。