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    • 4. 发明授权
    • Multiple ACK windows providing congestion control in reliable multicast protocol
    • 多个ACK窗口在可靠的多播协议中提供拥塞控制
    • US06505253B1
    • 2003-01-07
    • US09336659
    • 1999-06-18
    • Dah Ming ChiuMiriam C. KadanskyStephen R. HannaStephen A. HurstJoseph S. WesleyPhilip M. RosenzweigRadia J. Perlman
    • Dah Ming ChiuMiriam C. KadanskyStephen R. HannaStephen A. HurstJoseph S. WesleyPhilip M. RosenzweigRadia J. Perlman
    • G06F1300
    • H04L47/263H04L1/1832H04L12/185H04L12/1868H04L47/10H04L47/15H04L47/27H04L2001/0093
    • A multicast repair tree is established, the repair tree having one sender station and a plurality of repair head stations. A repair head station has an affiliated group of member stations. A repair head station retransmits a lost message to its affiliated group of member stations upon receipt from a member station of a NACK message indicating that the selected message was not received. Acknowledgment windows (ACK windows) are established in a member station for transmission of ACK or NACK message by the member station. A number of messages transmitted by the sender station during a transmission window is established. Also a same size of ACK window is established in the receiving stations, with a slot in the ACK window corresponding to each message transmitted by the repair head station. Each receiving station is assigned a slot in the ACK window during which time that receiving station transmits its ACK or NACK messages. Thus the ACK window slots assigned to receiver stations for transmission of ACK/NACK windows are staggered so that different receiver stations transmit their ACKNACK messages at different times. The slot for a particular receiver station to use may be assigned by a random process.
    • 建立组播修复树,修复树具有一个发送站和多个修复头站。 修理站具有附属的成员站组。 修复头站在从成员站接收到表示所选择的消息未被接收的NACK消息的情况下向其附属成员组重发丢失的消息。 成员站建立确认窗口(ACK窗口),用于成员站发送ACK或NACK消息。 在发送窗口期间由发送站发送的多个消息被建立。 在接收站中建立相同大小的ACK窗口,ACK窗口中的时隙对应于由修复站发送的每个消息。 每个接收站在ACK窗口中被分配一个时隙,在该时间内接收站发送其ACK或NACK消息。 因此,分配给用于发送ACK / NACK窗口的接收机站的ACK窗口时隙交错,使得不同的接收机站在不同时间发送它们的ACKNACK消息。 用于要使用的特定接收机站的时隙可以通过随机过程来分配。
    • 7. 发明授权
    • Use of beacon message in a network for classifying and discarding messages
    • 在网络中使用信标消息来分类和丢弃消息
    • US06658004B1
    • 2003-12-02
    • US09473402
    • 1999-12-28
    • Miriam C. KadanskyDah Ming ChiuStephen R. HannaStephen A. HurstRadia J. PerlmanJoseph S. Wesley
    • Miriam C. KadanskyDah Ming ChiuStephen R. HannaStephen A. HurstRadia J. PerlmanJoseph S. Wesley
    • H04L1228
    • H04L12/1827H04L47/10H04L47/31H04L67/104H04L67/1063H04L67/1074H04L69/329
    • A method and apparatus for identifying a data message that is eligible for discard. A beacon node periodically transmits a beacon message to a plurality of client nodes communicatively coupled via a network. Each beacon message includes a beacon sequence number and preferably, the beacon sequence numbers are authenticated by the beacon, node. The client nodes, upon receipt of the beacon messages, verify the authenticity of the respective received beacon sequence numbers and generate a local sequence number derived from the received beacon sequence number. When one client in the session has data to transmit to another client in the session, the sending client assembles a data message and inserts its local sequence number in the data message prior to transmission of the data message to the other client nodes in the session. The client nodes receiving the data message discard the data message if their respective local sequence number at the time of receipt of the data message exceeds the local sequence number inserted in the data message by a predetermined value. In one embodiment, the beacon node generates sequence numbers at a periodic interval P but only transmits 1 out of every m beacon sequence numbers to the client nodes in the session. The client nodes each set a local sequence counter equal to the beacon sequence number upon receipt of the beacon message and thereafter, increment the local sequence counter periodically at interval P. The local sequence counter value is employed as the local sequence number in each client node.
    • 一种用于识别符合丢弃资格的数据消息的方法和装置。 信标节点周期性地向经由网络通信耦合的多个客户端节点发送信标消息。 每个信标消息包括信标序列号,并且优选地,信标序列号由信标节点认证。 客户端节点在接收到信标消息后,验证相应接收到的信标序列号的真实性,并生成从接收到的信标序列号导出的本地序列号。 当会话中的一个客户端具有要在会话中传送给另一个客户端的数据时,发送客户端汇集一个数据消息,并将数据消息中的本地序列号插入到数据消息中,并传送到该会话中的其他客户机节点。 接收数据消息的客户节点如果在接收数据消息时其各自的本地序列号超过插入数据消息中的本地序列号预定值,则丢弃数据消息。 在一个实施例中,信标节点以周期性间隔P生成序列号,但是仅在每个m个信标序列号中发送1个到会话中的客户端节点。 客户端节点每接收到信标消息时都设置等于信标序列号的本地序列计数器,此后,以间隔P周期性地增加本地序列计数器。本地序列计数器值被用作每个客户端节点中的本地序列号 。
    • 8. 发明授权
    • Repair TTL computation and correction mechanism to perform localized
repairs in a multicast data distribution setup/framework
    • 修复TTL计算和校正机制,在组播数据分发设置/框架中执行本地化修复
    • US6104695A
    • 2000-08-15
    • US52201
    • 1998-03-31
    • Joseph S. WesleyRadia J. PerlmanStephen A. HurstStephen R. HannaMiriam C. KadanskyPhilip M. Rosenzweig
    • Joseph S. WesleyRadia J. PerlmanStephen A. HurstStephen R. HannaMiriam C. KadanskyPhilip M. Rosenzweig
    • H04L12/18H04L12/701H04L12/761G01R31/08H04H1/00H04L12/66
    • H04L45/00H04L12/1868H04L45/16
    • Determination of a Time To Live ("TTL") hop count for repair data units transmitted from a repair head to a standard destination device in a communications network is facilitated for multicast transmission. The repair head destination device monitors the path between the repair head destination device and the standard destination devices by exchanging messages with the respective standard destination devices. The repair head transmits control messages to each destination device including a dispatched TTL value and an Internet Protocol ("IP") TTL value. If the control message fails to reach one of the standard destination devices, that standard destination device transmits a transmission failure indication to the repair head destination device. In response to the transmission failure indication the TTL value employed for the control message is increased. Following receipt of the control message, the standard destination device calculates the TTL value required to transmit a data unit from the repair head to the standard destination device by subtracting the IP TTL value from the dispatched TTL value. If the calculated TTL difference value is non-zero then an excess-TTL indication is transmitted from the standard destination device to the repair head destination device.
    • 确定通信网络中从维修头传送到标准目的地设备的修复数据单元的生存时间(“TTL”)跳数有利于组播传输。 修理头目的设备通过与相应的标准目的地设备交换消息来监视修复头目的地设备和标准目的地设备之间的路径。 修复头向每个目的地设备发送控制消息,包括调度的TTL值和互联网协议(“IP”)TTL值。 如果控制消息未能到达标准目的地设备之一,则该标准目的地设备向修复头目的设备发送传输失败指示。 响应于传输失败指示,增加了用于控制消息的TTL值。 在接收到控制消息之后,标准目的地设备通过从调度的TTL值减去IP TTL值来计算从修复头向标准目的地设备发送数据单元所需的TTL值。 如果计算的TTL差值为非零,则从标准目的地设备向维修头目的地设备发送过量TTL指示。