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    • 1. 发明授权
    • Enhancing transmission reliability of monitored data
    • 提高监控数据的传输可靠性
    • US07593331B2
    • 2009-09-22
    • US11655003
    • 2007-01-17
    • Alpesh PatelAnantha RamaiahSyam Sundar AppalaPraveen Joshi
    • Alpesh PatelAnantha RamaiahSyam Sundar AppalaPraveen Joshi
    • H04L12/26H04L12/54G06F15/16G06F11/00
    • H04L69/16H04L1/1874H04L47/14H04L47/19H04L47/27H04L47/28H04L47/29H04L49/90H04L69/163H04W80/06
    • In one embodiment, an apparatus comprises logic encoded in one or more tangible media for enhancing transmission reliability of monitored data. The logic is operable to receive a plurality of segments for transmission over a TCP connection to a network node, where the TCP connection is associated with a transmit queue and a retransmit queue. The logic is also operable to detect a transmission anomaly on the TCP connection to the network node, and in response to detecting the transmission anomaly, is operable to perform any one of: store segments into a persistent buffer prior to transferring the segments into the transmit queue; copy segments from the retransmit queue into the persistent buffer, where the segments have been transmitted but not yet acknowledged by the network node; and copy segments from the transmit queue into the persistent buffer, where the segments have not yet been transmitted to the network node.
    • 在一个实施例中,一种装置包括在一个或多个有形介质中编码的逻辑,用于增强被监视数据的传输可靠性。 该逻辑可操作以接收多个段以便通过TCP连接传输到网络节点,其中TCP连接与发送队列和重发队列相关联。 该逻辑还可操作用于检测到与网络节点的TCP连接上的传输异常,并且响应于检测到传输异常,可操作以执行以下任何一个:在将段传送到传输之前将段存储到永久缓冲器中 队列; 将所述重传队列中的段复制到所述持久缓冲器中,其中所述段已被发送但尚未被所述网络节点确认; 并将段从传输队列复制到持久缓冲区中,其中段尚未传送到网络节点。
    • 2. 发明申请
    • Enhancing transmission reliability of monitored data
    • 提高监控数据的传输可靠性
    • US20080170501A1
    • 2008-07-17
    • US11655003
    • 2007-01-17
    • Alpesh PatelAnantha RamaiahSyam Sundar AppalaPraveen Joshi
    • Alpesh PatelAnantha RamaiahSyam Sundar AppalaPraveen Joshi
    • H04J1/16
    • H04L69/16H04L1/1874H04L47/14H04L47/19H04L47/27H04L47/28H04L47/29H04L49/90H04L69/163H04W80/06
    • In one embodiment, an apparatus comprises logic encoded in one or more tangible media for enhancing transmission reliability of monitored data. The logic is operable to receive a plurality of segments for transmission over a TCP connection to a network node, where the TCP connection is associated with a transmit queue and a retransmit queue. The logic is also operable to detect a transmission anomaly on the TCP connection to the network node, and in response to detecting the transmission anomaly, is operable to perform any one of: store segments into a persistent buffer prior to transferring the segments into the transmit queue; copy segments from the retransmit queue into the persistent buffer, where the segments have been transmitted but not yet acknowledged by the network node; and copy segments from the transmit queue into the persistent buffer, where the segments have not yet been transmitted to the network node.
    • 在一个实施例中,装置包括在一个或多个有形介质中编码的逻辑,用于增强被监视数据的传输可靠性。 该逻辑可操作以接收多个段以便通过TCP连接传输到网络节点,其中TCP连接与发送队列和重发队列相关联。 该逻辑还可操作用于检测到与网络节点的TCP连接上的传输异常,并且响应于检测到传输异常,可操作以执行以下任何一个:在将段传送到传输之前将段存储到永久缓冲器中 队列; 将所述重传队列中的段复制到所述持久缓冲器中,其中所述段已被发送但尚未被所述网络节点确认; 并将段从传输队列复制到持久缓冲区中,其中段尚未传送到网络节点。
    • 4. 发明授权
    • Applying quality of service to application messages in network elements based on roles and status
    • 基于角色和状态,将网络元素中的应用消息应用于服务质量
    • US07797406B2
    • 2010-09-14
    • US11495034
    • 2006-07-27
    • Alpesh PatelPraveen Joshi
    • Alpesh PatelPraveen Joshi
    • G06F15/177
    • H04L41/5022
    • Network elements provide application-level QoS for application-layer messages processed therein. An application based message is examined upon IP reassembly thereof. Information is accessed about a sender of the message. A credential is assigned to the sender based on the sender information and/or a status validated for a device that sends said message. The message is dynamically prioritized in relation to other network traffic to provide application QoS based on the sender credential and/or the device status. The message priority is changeable on the fly according to the dynamically variable information. Sender information relates to a role or authority level associated therewith and is dynamically variable with respect to time, situation and/or circumstance. Thus, OSI Layer 5, 6, or 7 application message role/status based attributes determine how packets are marked with Layer 2, 3 or 4 QoS values, integrating application-level concepts of order and priority into network-layer QoS mechanisms.
    • 网络元素为其中处理的应用层消息提供应用级QoS。 基于应用程序的消息在IP重新组装时进行检查。 访问有关消息发送者的信息。 基于发送者信息和/或发送所述消息的设备验证的状态来向发送者分配凭证。 该消息相对于其他网络流量动态优先,以基于发送者凭证和/或设备状态来提供应用QoS。 根据动态变量信息,消息优先级可以随时更改。 发件人信息涉及与其相关联的角色或权限级别,并且相对于时间,状况和/或环境动态变化。 因此,OSI层5,6或7应用消息角色/状态属性决定了如何使用第2,3,6层QoS值标记数据包,将应用层次的顺序和优先级概念集成到网络层QoS机制中。
    • 5. 发明申请
    • Applying quality of service to application messages in network elements based on roles and status
    • 基于角色和状态,将网络元素中的应用消息应用于服务质量
    • US20080025230A1
    • 2008-01-31
    • US11495034
    • 2006-07-27
    • Alpesh PatelPraveen Joshi
    • Alpesh PatelPraveen Joshi
    • H04J1/16
    • H04L41/5022
    • Network elements provide application-level QoS for application-layer messages processed therein. An application based message is examined upon IP reassembly thereof. Information is accessed about a sender of the message. A credential is assigned to the sender based on the sender information and/or a status validated for a device that sends said message. The message is dynamically prioritized in relation to other network traffic to provide application QoS based on the sender credential and/or the device status. The message priority is changeable on the fly according to the dynamically variable information. Sender information relates to a role or authority level associated therewith and is dynamically variable with respect to time, situation and/or circumstance. Thus, OSI Layer 5, 6, or 7 application message role/status based attributes determine how packets are marked with Layer 2, 3 or 4 QoS values, integrating application-level concepts of order and priority into network-layer QoS mechanisms.
    • 网络元素为其中处理的应用层消息提供应用级QoS。 基于应用程序的消息在IP重新组装时进行检查。 访问有关消息发送者的信息。 基于发送者信息和/或发送所述消息的设备验证的状态来向发送者分配凭证。 该消息相对于其他网络流量动态优先,以基于发送者凭证和/或设备状态来提供应用QoS。 根据动态变量信息,消息优先级可以随时更改。 发件人信息涉及与其相关联的角色或权限级别,并且相对于时间,状况和/或环境动态变化。 因此,OSI层5,6或7应用消息角色/状态属性决定了如何使用第2,3,6层QoS值标记数据包,将应用层次的顺序和优先级概念集成到网络层QoS机制中。
    • 7. 发明授权
    • Methods and apparatus for achieving route optimization and location privacy in an IPV6 network
    • 在IPV6网络中实现路由优化和位置隐私的方法和装置
    • US07840217B2
    • 2010-11-23
    • US10898579
    • 2004-07-23
    • Alpesh PatelKent LeungGopal Dommety
    • Alpesh PatelKent LeungGopal Dommety
    • H04Q7/20
    • H04L63/0407H04L63/08H04L63/0892H04W8/085H04W12/02H04W60/00H04W80/04H04W88/182
    • Methods and apparatus for performing proxy registration on behalf of a node with a Home Agent supporting Mobile IP are disclosed. A first registration request is composed on behalf of the node and transmitted to the Home Agent via a first Local Mobility Anchor, wherein the first Local Mobility Anchor is a regional controller via which registration is performed when the node moves within a region associated with the first Local Mobility Anchor. When the node moves within a region or between regions, the node is re-registered. Specifically, a second registration request is composed and transmitted to the first Local Mobility Anchor when the node moves within the region associated with the first Local Mobility Anchor. When the node moves into a second region associated with a second Local Mobility Anchor and outside the first region associated with the first Local Mobility Anchor, a second registration request is composed and transmitted to the Home Agent via the second Local Mobility Anchor, wherein the second Local Mobility Anchor is a regional controller via which registration is performed when the node moves within a region associated with second first Local Mobility Anchor.
    • 公开了代表具有支持移动IP的归属代理的节点执行代理注册的方法和装置。 第一注册请求是代表节点组成的,并且经由第一本地移动锚点被发送到归属代理,其中第一本地移动锚是一个区域控制器,当该节点在与第一本地移动锚相关联的区域内移动时, 本地移动锚。 当节点在区域内或区域之间移动时,节点被重新注册。 具体地,当节点在与第一本地移动锚相关联的区域内移动时,组成第二注册请求并将其发送到第一本地移动锚点。 当节点移动到与第二本地移动锚点相关联的第二区域并且在与第一本地移动锚点相关联的第一区域之外时,第二注册请求被组合并经由第二本地移动锚点发送到归属代理,其中第二 本地移动锚点是区域控制器,当节点在与第二局部移动锚相关联的区域内移动时,通过该区域控制器进行注册。