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    • 1. 发明申请
    • In-band DPI application awareness propagation enhancements
    • 带内DPI应用感知传播增强
    • US20090238192A1
    • 2009-09-24
    • US12076701
    • 2008-03-21
    • Andrew DolganowSteven Edward MorinColin Leon Kahn
    • Andrew DolganowSteven Edward MorinColin Leon Kahn
    • H04L12/28
    • H04L67/322H04L47/10H04L47/2408H04L47/2425
    • Various exemplary embodiments are a method and related device and computer-readable medium including one or more of the following: receiving a packet sent from the source node to the destination node; associating the packet with an active flow by accessing information in the packet; performing deep packet inspection (DPI) to identify an application associated with the active flow; associating application-identifying information with the packet; forwarding the packet including the application-identifying information towards the destination node; and performing application-specific processing at a downstream device on at least one packet belonging to the active flow, the downstream device identifying the application associated with the active flow by extracting the application-identifying information from the packet.
    • 各种示例性实施例是包括以下一个或多个的方法和相关设备和计算机可读介质:接收从源节点发送到目的地节点的分组; 通过访问分组中的信息来将分组与活动流相关联; 执行深度分组检测(DPI)以识别与主动流相关联的应用; 将应用识别信息与分组相关联; 将包括应用程序识别信息的分组转发到目的地节点; 并且在属于所述活动流的至少一个分组上的下游设备处执行应用特定处理,所述下游设备通过从所述分组中提取所述应用识别信息来标识与所述活动流相关联的应用。
    • 2. 发明授权
    • In-band DPI application awareness propagation enhancements
    • 带内DPI应用感知传播增强
    • US08264965B2
    • 2012-09-11
    • US12076701
    • 2008-03-21
    • Andrew DolganowSteven Edward MorinColin Leon Kahn
    • Andrew DolganowSteven Edward MorinColin Leon Kahn
    • H04L12/26H04L12/56
    • H04L67/322H04L47/10H04L47/2408H04L47/2425
    • Various exemplary embodiments are a method and related device and computer-readable medium including one or more of the following: receiving a packet sent from the source node to the destination node; associating the packet with an active flow by accessing information in the packet; performing deep packet inspection (DPI) to identify an application associated with the active flow; associating application-identifying information with the packet; forwarding the packet including the application-identifying information towards the destination node; and performing application-specific processing at a downstream device on at least one packet belonging to the active flow, the downstream device identifying the application associated with the active flow by extracting the application-identifying information from the packet.
    • 各种示例性实施例是包括以下一个或多个的方法和相关设备和计算机可读介质:接收从源节点发送到目的地节点的分组; 通过访问分组中的信息来将分组与活动流相关联; 执行深度分组检测(DPI)以识别与主动流相关联的应用; 将应用识别信息与分组相关联; 将包括应用程序识别信息的分组转发到目的地节点; 并且在属于所述活动流的至少一个分组上的下游设备处执行应用特定处理,所述下游设备通过从所述分组中提取所述应用识别信息来标识与所述活动流相关联的应用。
    • 5. 发明申请
    • APPLICATION-AWARE M:N HOT REDUNDANCY FOR DPI-BASED APPLICATION ENGINES
    • 应用指南:基于DPI的应用程序引擎的冗余冗余
    • US20100057940A1
    • 2010-03-04
    • US12200658
    • 2008-08-28
    • Andrew DolganowSteven Edward Morin
    • Andrew DolganowSteven Edward Morin
    • G06F15/16
    • H04L47/803H04L43/0817
    • A packet processing system for providing application-aware hot redundancy and a related card and methods are disclosed. The system may include a plurality of active devices, each including a processor configured to perform deep packet inspection to identify an application associated with an active flow, and a redundancy block configured to determine whether the application requires hot redundancy and, if so, to forward a message from which state information may be derived. The system may also include at least one protecting device in communication with each of the active devices and configured to receive the message regarding the active flow from the active device, derive state information from the message, and resume packet forwarding operations for the active flow upon failure of a respective active device of the plurality of active devices.
    • 公开了一种用于提供应用感知热冗余的分组处理系统以及相关的卡和方法。 该系统可以包括多个活动设备,每个活动设备包括被配置为执行深度分组检查以识别与活动流相关联的应用的处理器,以及被配置为确定应用是否需要热冗余的冗余块,如果是,则转发 可以导出状态信息的消息。 系统还可以包括与每个活动设备通信的至少一个保护设备,并且被配置为从主动设备接收关于主动流的消息,从消息中导出状态信息,并且恢复主动流的分组转发操作 多个有源器件的相应有源器件的故障。
    • 7. 发明申请
    • DPI-TRIGGERED APPLICATION-AWARE DORMANCY TIMER ADJUSTMENT FOR MOBILE DATA BEARERS
    • 用于移动数据承载器的DPI触发应用 - 多功能定时器调整
    • US20100054231A1
    • 2010-03-04
    • US12200772
    • 2008-08-28
    • Andrew DolganowSteven Edward Morin
    • Andrew DolganowSteven Edward Morin
    • H04J3/24
    • H04W76/38H04W92/14
    • Based on application information received from a Deep Packet Inspection (DPI) device, a Radio Network Controller (RNC) or similar device may select a dormancy timer value to optimize the use of network resources. In particular, the RNC may set an additional dormancy timer based on a default value or a rough determination of the application by examining port numbers. After the DPI device has received a sufficient number of packets to identify the underlying application, the DPI device may then propagate the application information to the RNC. Based on this application information, the RNC may determine the most efficient dormancy timer and modify the value of the default timer based on this determination.
    • 基于从深度分组检测(DPI)设备接收的应用信息,无线网络控制器(RNC)或类似设备可以选择休眠定时器值以优化网络资源的使用。 特别地,RNC可以通过检查端口号来基于默认值或应用的粗略确定设置附加的休眠定时器。 在DPI设备已经接收到足够数量的分组以识别基础应用之后,DPI设备然后可以将应用信息传播到RNC。 基于该应用信息,RNC可以基于该确定来确定最有效的休眠定时器并修改默认定时器的值。
    • 8. 发明申请
    • In-bound mechanism that verifies end-to-end service configuration with application awareness
    • 验证具有应用程序意识的端到端服务配置的入站机制
    • US20090219812A1
    • 2009-09-03
    • US12073107
    • 2008-02-29
    • Andrew DolganowSteven Edward MorinAnthony Peres
    • Andrew DolganowSteven Edward MorinAnthony Peres
    • H04L12/56
    • H04L47/10H04L47/20H04L47/2475H04L47/2483H04L69/32
    • A method of verifying end-to-end service configuration with application awareness, including one or more of the following: building an application specific service ping packet having an application identification field that identifies an application to which the application specific service ping packet corresponds; forwarding the application specific service ping packet towards a destination in a network; determining static configuration information regarding the application to which the application specific service ping packet corresponds at a network interface of a network element; inserting the static configuration information into the application specific service ping packet; determining at least one policy that applies to a flow including the application specific service ping packet; inserting the at least one policy into the application specific service ping packet; and extracting the service ping packet from the network.
    • 一种验证具有应用意识的端到端服务配置的方法,包括以下一个或多个:构建具有标识应用特定服务ping分组所对应的应用的应用标识字段的应用专用服务ping分组; 将应用特定服务ping分组转发到网络中的目的地; 确定在网络元件的网络接口处应用特定服务ping分组对应的应用的静态配置信息; 将静态配置信息插入应用程序特定服务ping数据包; 确定应用于包括所述应用特定服务ping分组的流的至少一个策略; 将所述至少一个策略插入到所述应用特定服务ping分组中; 并从网络中提取服务ping数据包。
    • 9. 发明授权
    • DPI-triggered application-aware dormancy timer adjustment for mobile data bearers
    • 用于移动数据承载的DPI触发的应用感知休眠定时器调整
    • US08289864B2
    • 2012-10-16
    • US12200772
    • 2008-08-28
    • Andrew DolganowSteven Edward Morin
    • Andrew DolganowSteven Edward Morin
    • H04L12/26
    • H04W76/38H04W92/14
    • Based on application information received from a Deep Packet Inspection (DPI) device, a Radio Network Controller (RNC) or similar device may select a dormancy timer value to optimize the use of network resources. In particular, the RNC may set an additional dormancy timer based on a default value or a rough determination of the application by examining port numbers. After the DPI device has received a sufficient number of packets to identify the underlying application, the DPI device may then propagate the application information to the RNC. Based on this application information, the RNC may determine the most efficient dormancy timer and modify the value of the default timer based on this determination.
    • 基于从深度分组检测(DPI)设备接收的应用信息,无线网络控制器(RNC)或类似设备可以选择休眠定时器值以优化网络资源的使用。 特别地,RNC可以通过检查端口号来基于默认值或应用的粗略确定设置附加的休眠定时器。 在DPI设备已经接收到足够数量的分组以识别基础应用之后,DPI设备然后可以将应用信息传播到RNC。 基于该应用信息,RNC可以基于该确定来确定最有效的休眠定时器并修改默认定时器的值。