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The Impact of Loss Recovery on Congestion Control for Reliable Multicast

机译:丢失恢复对可靠组播的拥塞控制的影响

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Most existing reliable multicast congestion control (RMCC) mechanisms try to emulate TCP congestion control behaviors for achieving TCP-compatibility. However, different loss recovery mechanisms employed in reliable multicast protocols, especially NAK-based retransmission and local loss recovery mechanisms, may lead to different behaviors and performance of congestion control. As a result, reliable multicast flows might be identified and treated as non-TCP-friendly by routers in the network. It is essential to understand those influences and take them into account in the development and deployment of reliable multicast services. In this paper, we study the influences comprehensively through analysis, modelling and simulations. We demonstrate that NAK-based retransmission and/or local loss recovery mechanisms are much more robust and efficient in recovering from single or multiple packet losses within a single round-trip time (RTT). For a better understanding on the impact of loss recovery on RMCC, we derive expressions for steady-state throughput of NAK-based RMCC schemes, which clearly brings out the throughput advantages of NAK-based RMCC over TCP Reno. We also show that timeout effects have little impact on shaping the performance of NAK-based RMCC schemes except for extremely high loss rates (>0.2). Finally, we use simulations to validate our findings and show that local loss recovery may further increase the throughput and deteriorate the fairness properties of NAK-based RMCC schemes. These findings and insights could provide useful recommendations for the design, testing and deployment of reliable multicast protocols and services
机译:大多数现有的可靠多播拥塞控制(RMCC)机制都试图模拟TCP拥塞控制行为,以实现TCP兼容性。但是,可靠的多播协议中采用的不同的丢失恢复机制,尤其是基于NAK的重传和本地​​丢失恢复机制,可能导致拥塞控制的行为和性能不同。结果,网络中的路由器可能会识别可靠的多播流并将其视为非TCP友好的。必须了解这些影响,并在可靠的多播服务的开发和部署中将它们考虑在内。在本文中,我们通过分析,建模和仿真来全面研究影响。我们证明,基于NAK的重传和/或本地丢失恢复机制在单个往返时间(RTT)内从单个或多个数据包丢失中恢复的功能更加强大和有效。为了更好地了解丢失恢复对RMCC的影响,我们导出了基于NAK的RMCC方案的稳态吞吐量的表达式,这清楚地展示了基于NAK的RMCC相对于TCP Reno的吞吐量优势。我们还表明,除了极高的丢失率(> 0.2)以外,超时效应对影响基于NAK的RMCC方案的性能影响很小。最后,我们使用仿真来验证我们的发现,并表明局部损失的恢复可能会进一步提高吞吐量,并恶化基于NAK的RMCC方案的公平性。这些发现和见解可以为设计,测试和部署可靠的多播协议和服务提供有用的建议。

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