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Failure handling in a reliable multicast protocol for improving buffer utilization and accommodating heterogeneous receivers

机译:可靠的多播协议中的故障处理,可提高缓冲区利用率并适应异构接收器

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Reliable multicast protocols are an important class of protocols for reliably disseminating information from a sender to multiple receivers in the face of node and link failures. A tree-based reliable multicast protocol (TRAM) provides scalable reliable multicast by grouping receivers in hierarchical repair groups and using a selective acknowledgment mechanism. We present an improvement to TRAM to minimize the resource utilization at intermediate hosts and to localize the effect of slow or malicious receivers on normal receivers. We present an evaluation of TRAM and TRAM++ on a campus-wide WAN without errors and with message errors. The evaluation brings out that, given a constraint on the buffer availability at intermediate hosts, TRAM++ can tolerate the constraint at the expense of increasing the end-to-end latency for the normal receivers by only 3.2% compared to TRAM in error-free cases. When slow or faulty receivers are present, TRAM++ is able to provide the same uninterrupted quality of service to the normal nodes while localizing the effect of the faulty ones without incurring any additional memory overhead.
机译:可靠的多播协议是一类重要的协议,用于面对节点和链路故障将信息从发送方可靠地分发到多个接收方。基于树的可靠多播协议(TRAM)通过将接收者分组到分层修复组中并使用选择性确认机制来提供可伸缩的可靠多播。我们提出了对TRAM的改进,以最大程度地减少中间主机上的资源利用率,并确定慢速或恶意接收器对正常接收器的影响。我们对校园范围内的WAN上的TRAM和TRAM ++进行了评估,没有错误和消息错误。评估表明,给定中间主机上缓冲区可用性的约束,在无错误情况下,TRAM ++可以忍受该约束,但代价是普通接收机的端到端延迟比TRAM仅增加3.2% 。当接收器速度较慢或出现故障时,TRAM ++能够为正常节点提供相同的不间断服务质量,同时定位故障节点的影响,而不会产生任何额外的内存开销。

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