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首页> 外文期刊>IEE Proceedings. Part I, Communications >Joint Local Delivery and Congestion Control Framework for Reliable Multicast
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Joint Local Delivery and Congestion Control Framework for Reliable Multicast

机译:联合本地传输和拥塞控制框架,实现可靠的组播

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摘要

The use of a server-based loss recovery technique for reliable multicast can significantly improve the system performance in terms of loss recovery latency and bandwidth consumption. Appropriate congestion control mechanisms are necessary to provide fairness and to maintain a high netWork throughput and link utilization. In reliable multicast protocol design the loss recovery associated with data delivery and congestion control are not independent issues and should be addressed simultaneously. This suggests that a server-based loss recovery technique allied withcongestion control could have potential in addressing the challenges of scalabililty and heterogeneity for reliable multicast in a best-effort netWork. The authors propose a new framework which jointly performs local delivery and congestion control (LDCC). In this framework, delivery and control servers (DCSs) collocated with routers perform LDCC functions. Each DCS and its serving receivers form a local DCS region according to a tree topology. Withproper acknowledgment processing and buffer management, packet loss can be efficiently recovered locally. Also, the overall throughput degradation caused by the interference of neighbouring regions can be mininised by local congestion control. NS-2 simulations are used to demonstrate that the framework can achieve a significantly lower loss recovery latency without sacrificing the network throughput, compared to existing approaches such as AER/NCA. It is also shown using fairness tests that the proposed framework is TCP-compatible.
机译:使用基于服务器的丢失恢复技术进行可靠的多播可以在丢失恢复延迟和带宽消耗方面显着提高系统性能。为了提供公平性并保持较高的网络吞吐量和链路利用率,必须使用适当的拥塞控制机制。在可靠的多播协议设计中,与数据传递和拥塞控制相关的丢失恢复不是独立的问题,应同时解决。这表明与拥塞控制相结合的基于服务器的丢失恢复技术在解决尽力而为网络中可靠多播的可扩展性和异构性方面可能具有潜力。作者提出了一个新框架,该框架可以共同执行本地传递和拥塞控制(LDCC)。在此框架中,与路由器并置的交付和控制服务器(DCS)执行LDCC功能。每个DCS及其服务接收器根据树形拓扑形成本地DCS区域。借助正确的确认处理和缓冲区管理,可以在本地有效地恢复数据包丢失。而且,可以通过局部拥塞控制来最小化由邻近区域的干扰引起的总吞吐量降低。与现有方法(如AER / NCA)相比,NS-2仿真用于证明该框架可以在不牺牲网络吞吐量的情况下实现明显更低的丢失恢复延迟。使用公平性测试还表明,所提出的框架与TCP兼容。

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