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Efficient error recovery for reliable multicast.

机译:高效的错误恢复,可实现可靠的多播。

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Multicast is an efficient mechanism for distributing data from one sender to multiple receivers. Many applications need a reliable multicast service which is not provided by the existing IP multicast protocol. Providing such a service on a large scale requires efficient algorithms for error recovery.; This dissertation presents a randomized reliable multicast protocol called RRMP which has demonstrably achieved several good properties. The protocol eliminates message implosion by diffusing the responsibility of error recovery among all members in the group and improves the robustness of the system against process failures. It provides good local recovery by dynamically organizing members into an error recovery hierarchy according to their geographic locations. It optimizes buffer management through an innovative two-phase buffering algorithm that explicitly addresses the variances in delivery latency for large multicast groups. The algorithm reduces buffer requirements by adaptively allocating buffer space to messages most needed in the system and by spreading the load of buffering among all members in the group. The key idea of RRMP is to use randomization as a powerful technique to achieve high robustness and efficiency in reliable multicast communications.; The RRMP protocol works well within the existing IP multicast framework and does not require additional support from network routers. Both analysis and experimental results show that the performance penalty due to randomization is low and can be tuned according to application requirements.
机译:组播是一种将数据从一个发送方分发到多个接收方的有效机制。许多应用程序需要可靠的多播服务,而现有IP多播协议无法提供这种服务。大规模提供这种服务需要有效的错误恢复算法。本文提出了一种称为RRMP的随机可靠多播协议,该协议已证明具有若干良好的性能。该协议通过在组中的所有成员之间分散错误恢复的责任来消除消息内爆,并提高了系统针对过程故障的鲁棒性。通过根据成员的地理位置将成员动态组织到错误恢复层次结构中,它可以提供良好的本地恢复。它通过创新的两阶段缓冲算法优化了缓冲区管理,该算法明确解决了大型多播组的传递延迟中的差异。该算法通过将缓冲区空间自适应地分配给系统中最需要的消息,并通过在组中的所有成员之间分配缓冲负载来降低缓冲区需求。 RRMP的关键思想是使用随机化作为一种​​强大的技术,以在可靠的多播通信中实现高鲁棒性和效率。 RRMP协议在现有IP多播框架内运行良好,并且不需要网络路由器的额外支持。分析和实验结果均表明,随机化导致的性能损失较低,可以根据应用要求进行调整。

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