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    • 1. 发明申请
    • Network capacity planning
    • 网络容量规划
    • US20070067296A1
    • 2007-03-22
    • US11507112
    • 2006-08-19
    • Patrick MalloyDana ZnamovaAlain CohenAntoine DunnJohn StrohmAbbas AliRussell Elsner
    • Patrick MalloyDana ZnamovaAlain CohenAntoine DunnJohn StrohmAbbas AliRussell Elsner
    • G06F17/30G06F7/00
    • H04L41/145H04L41/22
    • Data representing application deployment attributes, network topology, and network performance attributes based on a reduced set of element attributes is utilized to simulate application deployment. The data may be received from a user directly, a program that models a network topology or application behavior, and a wizard that implies the data based on an interview process. The simulation may be based on application deployment attributes including application traffic pattern, application message sizes, network topology, and network performance attributes. The element attributes may be determined from a lookup table of element operating characteristics that may contain element maximum and minimum boundary operating values utilized to interpolate other operating conditions. Application response time may be derived using an iterative analysis based on multiple instances of one or more applications wherein a predetermined number of iterations is used or until a substantially steady state of network performance is achieved.
    • 利用表示应用程序部署属性,网络拓扑和基于简化的元素属性集合的网络性能属性的数据来​​模拟应用程序部署。 可以直接从用户接收数据,对网络拓扑或应用行为进行建模的程序,以及基于访问过程暗示数据的向导。 模拟可以基于应用部署属性,包括应用流量模式,应用消息大小,网络拓扑和网络性能属性。 可以从可能包含用于内插其他操作条件的元件最大和最小边界操作值的元件操作特性的查找表来确定元素属性。 可以使用基于一个或多个应用的​​多个实例的迭代分析来导出应用响应时间,其中使用预定数量的迭代,或直到达到基本稳定的网络性能状态。
    • 4. 发明授权
    • Discovery of multiple-parent dependencies in network performance analysis
    • 在网络性能分析中发现多父依赖关系
    • US08005006B2
    • 2011-08-23
    • US12478775
    • 2009-06-05
    • Steve NiemczykAntoine DunnRussell Mark ElsnerPatrick J. MalloyDana Znamova
    • Steve NiemczykAntoine DunnRussell Mark ElsnerPatrick J. MalloyDana Znamova
    • H04L12/28
    • H04L43/18
    • Multiple parent-dependencies are identified for messages that are received on a network that includes nodes that are configured to avoid the conventional strictly-sequential communications techniques and protocols, in order to accelerate network performance. If a network is known, or assumed, to include intermediate/proxy nodes that are configured to provide acceleration, access control, and other services, the system that analyzes traffic on the network is configured to assume that these nodes may/will provide such features, and thereby introduce multiple dependencies among the messages communicated across the network. For each message transmitted from a forwarding node, messages received at the forwarding node are assessed to distinguish messages from the destination node and messages from an other node, and a dependency is defined for each.
    • 为在网络上接收的消息识别多个父依赖关系,该消息包括被配置为避免传统的严格顺序通信技术和协议的节点,以便加速网络性能。 如果网络已知或假设为包括被配置为提供加速,访问控制和其他服务的中间/代理节点,则分析网络上的流量的系统被配置为假设这些节点可以/将提供这样的特征 ,从而在通过网络传送的消息之间引入多个依赖关系。 对于从转发节点发送的每个消息,评估在转发节点处接收的消息以区分来自目的地节点的消息和来自其他节点的消息,并且为每个消息定义依赖关系。
    • 5. 发明授权
    • Network capacity planning
    • 网络容量规划
    • US08296424B2
    • 2012-10-23
    • US12861832
    • 2010-08-24
    • Patrick J. MalloyDana ZnamovaAlain J. CohenAntoine DunnJohn W. StrohmAbbas Haider AliRussell Mark Elsner
    • Patrick J. MalloyDana ZnamovaAlain J. CohenAntoine DunnJohn W. StrohmAbbas Haider AliRussell Mark Elsner
    • G06F15/16
    • H04L41/145H04L41/22
    • Data representing application deployment attributes, network topology, and network performance attributes based on a reduced set of element attributes is utilized to simulate application deployment. The data may be received from a user directly, a program that models a network topology or application behavior, and a wizard that implies the data based on an interview process. The simulation may be based on application deployment attributes including application traffic pattern, application message sizes, network topology, and network performance attributes. The element attributes may be determined from a lookup table of element operating characteristics that may contain element maximum and minimum boundary operating values utilized to interpolate other operating conditions. Application response time may be derived using an iterative analysis based on multiple instances of one or more applications wherein a predetermined number of iterations is used or until a substantially steady state of network performance is achieved.
    • 利用表示应用程序部署属性,网络拓扑和基于简化的元素属性集合的网络性能属性的数据来​​模拟应用程序部署。 可以直接从用户接收数据,对网络拓扑或应用行为进行建模的程序,以及基于访问过程暗示数据的向导。 模拟可以基于应用部署属性,包括应用流量模式,应用消息大小,网络拓扑和网络性能属性。 可以从可能包含用于内插其他操作条件的元件最大和最小边界操作值的元件操作特性的查找表来确定元素属性。 可以使用基于一个或多个应用的​​多个实例的迭代分析来导出应用响应时间,其中使用预定数量的迭代,或直到达到基本稳定的网络性能状态。
    • 6. 发明申请
    • NETWORK CAPACITY PLANNING
    • 网络容量规划
    • US20110055390A1
    • 2011-03-03
    • US12861832
    • 2010-08-24
    • Patrick J. MalloyDana ZnamovaAlain J. CohenAntoine DunnJohn W. StrohmAbbas Haider AliRussell Mark Elsner
    • Patrick J. MalloyDana ZnamovaAlain J. CohenAntoine DunnJohn W. StrohmAbbas Haider AliRussell Mark Elsner
    • G06F15/16
    • H04L41/145H04L41/22
    • Data representing application deployment attributes, network topology, and network performance attributes based on a reduced set of element attributes is utilized to simulate application deployment. The data may be received from a user directly, a program that models a network topology or application behavior, and a wizard that implies the data based on an interview process. The simulation may be based on application deployment attributes including application traffic pattern, application message sizes, network topology, and network performance attributes. The element attributes may be determined from a lookup table of element operating characteristics that may contain element maximum and minimum boundary operating values utilized to interpolate other operating conditions. Application response time may be derived using an iterative analysis based on multiple instances of one or more applications wherein a predetermined number of iterations is used or until a substantially steady state of network performance is achieved.
    • 利用表示应用程序部署属性,网络拓扑和基于简化的元素属性集合的网络性能属性的数据来​​模拟应用程序部署。 可以直接从用户接收数据,对网络拓扑或应用行为进行建模的程序,以及基于访问过程暗示数据的向导。 模拟可以基于应用部署属性,包括应用流量模式,应用消息大小,网络拓扑和网络性能属性。 可以从可能包含用于内插其他操作条件的元件最大和最小边界操作值的元件操作特性的查找表来确定元素属性。 可以使用基于一个或多个应用的​​多个实例的迭代分析来导出应用响应时间,其中使用预定数量的迭代,或直到达到基本稳定的网络性能状态。
    • 10. 发明申请
    • DISCOVERY OF MULTIPLE-PARENT DEPENDENCIES IN NETWORK PERFORMANCE ANALYSIS
    • 在网络性能分析中发现多方面的依赖关系
    • US20090303899A1
    • 2009-12-10
    • US12478775
    • 2009-06-05
    • Steve NIEMCZYKAntoine DunnRussell Mark ElsnerPatrick J. MalloyDana Znamova
    • Steve NIEMCZYKAntoine DunnRussell Mark ElsnerPatrick J. MalloyDana Znamova
    • H04L12/26
    • H04L43/18
    • Multiple parent-dependencies are identified for messages that are received on a network that includes nodes that are configured to avoid the conventional strictly-sequential communications techniques and protocols, in order to accelerate network performance. If a network is known, or assumed, to include intermediate/proxy nodes that are configured to provide acceleration, access control, and other services, the system that analyzes traffic on the network is configured to assume that these nodes may/will provide such features, and thereby introduce multiple dependencies among the messages communicated across the network. For each message transmitted from a forwarding node, messages received at the forwarding node are assessed to distinguish messages from the destination node and messages from an other node, and a dependency is defined for each.
    • 为在网络上接收的消息识别多个父依赖关系,该消息包括被配置为避免传统的严格顺序通信技术和协议的节点,以便加速网络性能。 如果网络已知或假设为包括被配置为提供加速,访问控制和其他服务的中间/代理节点,则分析网络上的流量的系统被配置为假设这些节点可以/将提供这样的特征 ,从而在通过网络传送的消息之间引入多个依赖关系。 对于从转发节点发送的每个消息,评估在转发节点处接收的消息以区分来自目的地节点的消息和来自其他节点的消息,并且为每个消息定义依赖关系。