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    • 81. 发明授权
    • Adaptive bandwidth utilization for telemetered data
    • 遥测数据的自适应带宽利用率
    • US07782789B2
    • 2010-08-24
    • US10948035
    • 2004-09-23
    • Robert D. StultzBradford L. Kizzort
    • Robert D. StultzBradford L. Kizzort
    • H04L12/26
    • H04L29/06027H04L29/06H04L47/10H04L47/38H04L65/80H04L69/326H04L69/327H04M11/002
    • A method (400) for optimizing bandwidth utilization in a communications network (100). The communications network can include a data source (105) and a data client (110). Responsive to a measurement of at least one communication parameter (120) of a commutated bitstream (115) which is transmitted to the client, the data source can change a commutation format of the commutated bitstream. The communication parameters can include a data receive time (TRx), a data latency and/or an effective receive data rate (DEff) of the commutated bitstream. The communication parameters can be transmitted to the data source as telemetry. The change of commutation format can occur in an open systems interconnection (OSI) layer such as a session layer and/or a transport layer.
    • 一种用于优化通信网络(100)中的带宽利用率的方法(400)。 通信网络可以包括数据源(105)和数据客户机(110)。 响应于发送到客户机的换向比特流(115)的至少一个通信参数(120)的测量,数据源可以改变换向比特流的换向格式。 通信参数可以包括换流比特流的数据接收时间(TRx),数据延迟和/或有效接收数据速率(DEff)。 通信参数可以作为遥测传输到数据源。 换向格式的改变可以在诸如会话层和/或传输层的开放系统互连(OSI)层中发生。
    • 82. 发明申请
    • Native Format Tunneling
    • 本机格式化隧道
    • US20100180047A1
    • 2010-07-15
    • US12725235
    • 2010-03-16
    • Peter SurmaAndreas DahlStefan RossmanithChristoph Hofmann
    • Peter SurmaAndreas DahlStefan RossmanithChristoph Hofmann
    • G06F15/16
    • G06F9/546H04L67/02H04L69/326
    • Systems and techniques are disclosed for transmitting a message through an application integration system without having to convert the message from a format that native to both a sending application and a receiving application. A computer-implemented method for transmitting a message from a sending application through an application integration system can include determining a receiving application of the message, and determining a file format used by the receiving application. If the file format used by the receiving application is substantially identical to a file format used by the sending application, the method can include wrapping the message in a markup language file envelope according to a markup language used by the application integration system. The message can then be routed in the markup language file envelope to the receiving application.
    • 公开了用于通过应用集成系统发送消息的系统和技术,而不必将消息从本地发送到发送应用和接收应用的格式转换。 用于通过应用集成系统从发送应用发送消息的计算机实现的方法可以包括确定消息的接收应用,以及确定接收应用使用的文件格式。 如果接收应用使用的文件格式与发送应用使用的文件格式基本相同,则该方法可以包括根据应用集成系统使用的标记语言将消息包装在标记语言文件包络中。 然后可以将消息以标记语言文件信封路由到接收应用程序。
    • 86. 发明申请
    • Reducing Retransmission of Out of Order Packets
    • 减少重传无序数据包
    • US20090323527A1
    • 2009-12-31
    • US12163064
    • 2008-06-27
    • Jos M. AccapadiAndrew DunsheaGary L. Nevling
    • Jos M. AccapadiAndrew DunsheaGary L. Nevling
    • H04B7/204
    • H04L1/188H04L1/1841H04L1/1896H04L69/28H04L69/324H04L69/326
    • Methods and arrangements of network communications are discussed. Embodiments include transformations, code, state machines or other logic to determine an average rate of duplicate packets per connection for packets received by a node over an interface. The embodiment may involve selecting a connection from the connections established over the interface, determining that a rate of duplicate packets for the selected connection exceeds the average rate of duplicate packets by a threshold percentage, and sending a message to a transmitter of the duplicate packets over the connection to increase a timeout interval to retransmit packets. Another embodiment may provide an apparatus for increasing a timeout interval to retransmit packets. Still another embodiment may provide a computer program produce for increasing a timeout interval to retransmit packets.
    • 讨论网络通信的方法和布置。 实施例包括转换,代码,状态机或其他逻辑,以确定由接口上的节点接收的分组的每个连接的重复分组的平均速率。 该实施例可以包括从通过接口建立的连接中选择连接,确定所选连接的重复分组的速率超过重复分组的平均速率阈值百分比,并且将重复分组的消息发送到发送器 连接增加重发数据包的超时间隔。 另一个实施例可以提供一种用于增加重发分组的超时间隔的装置。 另一个实施例可以提供用于增加重发分组的超时间隔的计算机程序产生。
    • 87. 发明申请
    • METHOD FOR TRANSMITTING FRAGMENTED PACKETS, COMMUNICATION SYSTEM, AND TUNNEL EQUIPMENT
    • 发送分组包,通信系统和隧道设备的方法
    • US20090238209A1
    • 2009-09-24
    • US12477359
    • 2009-06-03
    • Liedan Ju
    • Liedan Ju
    • H04J3/24
    • H04L29/1249H04L29/12509H04L29/12537H04L29/12924H04L47/10H04L61/2567H04L61/2578H04L61/6063H04L63/029H04L69/16H04L69/166H04L69/22H04L69/326
    • A method for transmitting fragmented packets, a communication system and tunnel equipment are disclosed herein to enable fragmented packets to traverse the NAT or firewall. The method includes: the first tunnel equipment receives an IP fragmented packet and converts it into a non-fragmented packet, and transmits the non-fragmented packet to the second tunnel equipment through a UDP tunnel. The system includes: a first tunnel equipment, a second tunnel equipment, and a UDP tunnel which connects the first tunnel equipment with the second tunnel equipment. The first funnel equipment is adapted to: receive an IP fragmented packet and convert it into a non-fragmented packet, and transmit the non-fragmented packet to the second tunnel equipment through a UDP tunnel. The second tunnel equipment is adapted to receive the packet from the first tunnel equipment. In addition, a tunnel equipment is disclosed herein. Through the present invention, fragmented packets can traverse the firewall.
    • 本文公开了一种用于发送分段分组的方法,通信系统和隧道设备,以使分段分组能够穿过NAT或防火墙。 该方法包括:第一隧道设备接收IP分片报文,并将其转换为非分段报文,并通过UDP隧道将未分片报文发送给第二隧道设备。 该系统包括:第一隧道设备,第二隧道设备和连接第一隧道设备与第二隧道设备的UDP隧道。 第一漏斗设备适用于:接收IP分片报文,并将其转换为非分片报文,并通过UDP隧道将无分片报文发送给第二隧道设备。 第二隧道设备适于从第一隧道设备接收分组。 此外,本文公开了隧道设备。 通过本发明,分片分组可以穿过防火墙。
    • 88. 发明申请
    • Tunneling SSL over SSH
    • 通过SSH隧道化SSL
    • US20090222578A1
    • 2009-09-03
    • US12072932
    • 2008-02-29
    • James P. Schneider
    • James P. Schneider
    • G06F15/173
    • H04L63/029H04L63/166H04L69/32H04L69/326
    • A system and method for enabling single-socket server applications to receive information via multiple ports. In one embodiment, a system includes a network tunnel configured to receive traffic at a first port of an application server and to communicate the received traffic to a second port of the application server. The system further includes a single-socket application, coupled to the second port of the application server, to monitor for incoming traffic at the second port, and to receive the traffic destined for the first port and communicated to the second port via the network tunnel.
    • 一种允许单插槽服务器应用程序通过多个端口接收信息的系统和方法。 在一个实施例中,系统包括网络隧道,网络隧道被配置为在应用服务器的第一端口处接收流量,并将接收到的流量传送到应用服务器的第二端口。 该系统还包括耦合到应用服务器的第二端口的单插槽应用,以监视第二端口处的入站业务,并且接收去往第一端口的业务并且经由网络隧道传送到第二端口 。
    • 89. 发明申请
    • DETECTING OUTBOUND NAGLING ON A TCP NETWORK CONNECTION
    • 在TCP网络连接上检测出端接NAGLING
    • US20090185497A1
    • 2009-07-23
    • US12417194
    • 2009-04-02
    • Rajiv AroraJesse M. Gordon
    • Rajiv AroraJesse M. Gordon
    • H04L12/26
    • H04L29/06H04L47/10H04L47/19H04L47/283H04L47/323H04L69/16H04L69/163H04L69/166H04L69/326
    • Systems and media for detecting outbound Nagling on a TCP network connection are disclosed. Embodiments may include creating by a sender computer one or more segments to be transmitted to a receiver computer and determining by the sender computer whether any of the one or more segments to be transmitted are small segments and determining whether a previously transmitted small segment is unacknowledged by the receiver computer. If the previously transmitted small segment is unacknowledged by the receiver computer and at least one of the segments to be transmitted is a small segment, embodiments may also include detecting by the sender computer a Nagling condition on the network connection. Further embodiments may include modifying a Nagle algorithm configuration of the network connection in response to the detected Nagling condition by turning off the Nagle algorithm or reducing a delayed acknowledgement timer for the network connection.
    • 公开了用于在TCP网络连接上检测出站Nagling的系统和媒体。 实施例可以包括由发送者计算机创建要发送到接收机计算机的一个或多个分段,并由发送者计算机确定要发送的一个或多个分段中的任一个是否为小分段,并且通过以下方式确定先前发送的小分段是否未被确认 接收机电脑。 如果先前发送的小段由接收机计算机未被确认,并且待传输的段中的至少一个是小段,则实施例还可以包括由发送者计算机检测网络连接上的“一般”状态。 另外的实施例可以包括通过关闭Nagle算法或减少用于网络连接的延迟确认定时器来响应于检测到的Nagling条件来修改网络连接的Nagle算法配置。