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Lateral error recovery for media streaming in application-level multicast

机译:应用程序级多播中媒体流的横向错误恢复

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We consider media streaming using application-level multicast (ALM) where packet loss has to be recovered via retransmission in a timely manner. Since packets may be lost due to congestion, node failures, and join and leave dynamics, traditional "vertical" recovery approach where upstream nodes retransmit the lost packets is no longer effective. We therefore propose lateral error recovery (LER). In LER, hosts are divided into a number of planes, each of which forms an independent ALM tree. Since error correlation across planes is low, a node effectively recovers its error by "laterally" requesting retransmission from nearby nodes in other planes. We present analysis on the complexity and recovery delay on LER. Using Internet-like topologies, we show via simulations that LER is an effective error recovery mechanism. It achieves low overhead in terms of delivery delay (i.e., relative delay penalty) and physical link stress. As compared with traditional recovery schemes, LER attains much lower residual loss rate (i.e., loss rate after retransmission) under a certain deadline constraint. The performance can be substantially improved in the presence of some reliable proxies.
机译:我们考虑使用应用程序级多播(ALM)进行媒体流传输,其中必须通过重传及时恢复丢包。由于数据包可能由于拥塞,节点故障以及加入和离开动态而丢失,因此传统的“垂直”恢复方法(上游节点重新传输丢失的数据包)不再有效。因此,我们提出了横向错误恢复(LER)。在LER中,主机分为多个平面,每个平面形成一个独立的ALM树。由于跨平面的错误相关性较低,因此节点可以通过“横向”请求其他​​平面附近节点的重传来有效地恢复其错误。我们目前对LER的复杂性和恢复延迟进行分析。使用类似Internet的拓扑,我们通过仿真显示LER是一种有效的错误恢复机制。就传送延迟(即相对延迟损失)和物理链路压力而言,它实现了低开销。与传统的恢复方案相比,LER在一定的期限约束下获得了更低的残余丢失率(即重传后的丢失率)。在存在一些可靠代理的情况下,可以显着提高性能。

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