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    • 3. 发明授权
    • Detecting change in a transport protocol window size without data transmission
    • 检测传输协议窗口大小的变化,无需数据传输
    • US07613118B2
    • 2009-11-03
    • US11133622
    • 2005-05-19
    • Chandrashekhar AppannaAnantha RamaiahAmol Khare
    • Chandrashekhar AppannaAnantha RamaiahAmol Khare
    • G01R31/08G06F12/00
    • H04L69/16H04L69/163Y10S707/99953Y10S707/99955
    • A method detects a change in TCP receive window size while preventing fragmentation of data. A TCP stack receives a segment that advertises a receive window size of zero. If data needs to be sent, and only if so, a timer is started. When the timer expires, a TCP segment that contains a first sequence number value equal to second sequence number representing sent but unacknowledged data minus one, and a segment length value of zero, is sent. Without sending a fragment of data, this triggers a peer TCP process to send an updated window size. A TCP ACK segment is received and contains an updated receive window size. If the updated receive window size is greater than a specified value, then the data is sent. Otherwise, a counter is incremented, and the steps are re-performed if the counter is less than a specified value.
    • 一种方法检测TCP接收窗口大小的变化,同时防止数据碎片化。 TCP堆栈接收一个通告接收窗​​口大小为零的段。 如果需要发送数据,并且只有这样,才能启动定时器。 当定时器到期时,发送包含表示发送但未确认的数据减去1的第二序列号的第一序列号值和段长度值为零的TCP段。 不发送数据片段,这将触发对等TCP进程发送更新的窗口大小。 TCP ACK段被接收并且包含更新的接收窗口大小。 如果更新的接收窗口大小大于指定值,则发送数据。 否则,计数器递增,如果计数器小于指定值,则重新执行步骤。
    • 5. 发明申请
    • HIGH AVAILABILITY TRANSPORT PROTOCOL METHOD AND APPARATUS
    • 高可用性运输协议方法和设备
    • US20100296516A1
    • 2010-11-25
    • US12830948
    • 2010-07-06
    • Anantha RamaiahChandrashekhar AppannaAmol Khare
    • Anantha RamaiahChandrashekhar AppannaAmol Khare
    • H04L12/56
    • H04L41/0668H04L69/16H04L69/40
    • A system and method supporting efficient, scalable stateful switchover of transport layer connections in a telecommunications network element. One method involves receiving, at a network element comprising an active transport protocol process coupled to a standby protocol process, a request to configure a first transport layer connection maintained at the active transport protocol process for stateful switchover; receiving an event associated with the first transport layer connection; creating a message containing replicated event information based on the received event; sending the message to the standby transport protocol process; and processing the message at the standby transport protocol process, wherein the standby transport protocol process replicates state information for the first connection.
    • 一种支持电信网络元件中传输层连接的有效,可扩展的状态切换的系统和方法。 一种方法包括在包括与备用协议进程相关联的活动传输协议进程的网络元件处接收配置在活动传输协议进程处保持的用于状态切换的第一传输层连接的请求; 接收与所述第一传输层连接相关联的事件; 基于接收到的事件创建包含复制事件信息的消息; 将消息发送到备用传输协议进程; 以及在所述备用传输协议过程处理所述消息,其中所述备用传输协议进程复制所述第一连接的状态信息。
    • 6. 发明授权
    • High availability transport protocol method and apparatus
    • 高可用性传输协议方法和装置
    • US07751311B2
    • 2010-07-06
    • US11134678
    • 2005-05-19
    • Anantha RamaiahChandrashekhar AppannaAmol Khare
    • Anantha RamaiahChandrashekhar AppannaAmol Khare
    • G01R31/08G06F11/00G08C15/00H04J1/16H04J3/14H04L1/00H04L12/26
    • H04L41/0668H04L69/16H04L69/40
    • A system and method supporting efficient, scalable stateful switchover of transport layer connections in a telecommunications network element. One method involves receiving, at a network element comprising an active transport protocol process coupled to a standby protocol process, a request to configure a first transport layer connection maintained at the active transport protocol process for stateful switchover; receiving an event associated with the first transport layer connection; creating a message containing replicated event information based on the received event; sending the message to the standby transport protocol process; and processing the message at the standby transport protocol process, wherein the standby transport protocol process replicates state information for the first connection.
    • 一种支持电信网络元件中传输层连接的有效,可扩展的状态切换的系统和方法。 一种方法包括在包括与备用协议进程相关联的活动传输协议进程的网络元件处接收配置在活动传输协议进程处保持的用于状态切换的第一传输层连接的请求; 接收与所述第一传输层连接相关联的事件; 基于接收到的事件创建包含复制事件信息的消息; 将消息发送到备用传输协议进程; 以及在所述备用传输协议过程处理所述消息,其中所述备用传输协议进程复制所述第一连接的状态信息。
    • 7. 发明授权
    • Transport protocol connection synchronization
    • 传输协议连接同步
    • US07801135B2
    • 2010-09-21
    • US11134686
    • 2005-05-19
    • Chandrashekhar AppannaAnantha Ramaiah
    • Chandrashekhar AppannaAnantha Ramaiah
    • H04L12/56
    • H04L69/16H04L45/121H04L69/14H04L69/161H04L69/163H04L69/326
    • A system and method supporting synchronization of replicated transport layer connections in a redundant processor telecommunications network element. One method involves receiving, at a network element comprising an active transport protocol process coupled to a standby transport protocol process, information identifying a newly created transport layer connection maintained at the active transport protocol process; assigning a unique connection identifier to the transport layer connection; sending the unique connection identifier, in association with other, protocol-specific connection identifying information, to the standby protocol process; and sending, to the standby transport protocol process, one or more messages comprising one or more properties or statistics associated with the transport layer connection, wherein the messages identify the transport layer connection using the unique connection identifier.
    • 支持冗余处理器电信网络元件中复制传输层连接同步的系统和方法。 一种方法包括在包括与备用传输协议过程相关联的活动传输协议进程的网络元件处接收标识在活动传输协议过程中维护的新创建的传输层连接的信息; 向传输层连接分配唯一的连接标识符; 将与所述协议特定连接识别信息相关联的唯一连接标识符发送到所述备用协议进程; 以及向所述备用传输协议进程发送包括与所述传输层连接相关联的一个或多个属性或统计信息的一个或多个消息,其中所述消息使用所述唯一连接标识符标识所述传输层连接。