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Fast Convergence of Variable-Structure Congestion Control Protocol with Explicit Precise Feedback

机译:具有明确精确反馈的变结构拥塞控制协议的快速收敛

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Traditional TCP has significant limitations such as unclear congestion implication, low utilization in high bandwidth delay product networks, unstable throughput and limited fairness. In order to overcome such limitations, research on design and development of more effective congestion control algorithms, especially in the high bandwidth delay product networks, is very active. Variable-structure congestion Control Protocol (VCP) uses two ECN bits to deliver the bottleneck link utilization region to end systems, and achieves high utilization, low persistent queue length, negligible packet loss rate and reasonable fairness. Owing to the utilization of large multiplicative decrease factor, VCP flows need very long time to finish fairness convergence. To address this problem, a new method called VCP-Fast Convergence (VCP-FC) is proposed in this paper. VCP-FC uses more bits to deliver precise network load factor back to end systems. The end system calculates the fairness bandwidth based on the variance rates of the load factor and throughput, and then quickly adjusts the congestion window to approach the fairness bandwidth. VCP-FC shortens the fairness convergence time effectively, and meanwhile improves the efficiency and fairness of VCP. At last, the performance of VCP-FC is evaluated using ns2 simulations.
机译:传统的TCP具有很大的局限性,例如不清楚的拥塞含义,高带宽延迟产品网络中的利用率低,吞吐量不稳定和公平性有限。为了克服这些限制,关于更有效的拥塞控制算法的设计和开发的研究非常活跃,尤其是在高带宽延迟产品网络中。可变结构拥塞控制协议(VCP)使用两个ECN位将瓶颈链路利用区域传递到终端系统,并实现了高利用率,低持久队列长度,可忽略的丢包率和合理的公平性。由于利用了较大的乘数减少因子,VCP流需要很长时间才能完成公平收敛。为了解决这个问题,本文提出了一种称为VCP快速收敛(VCP-FC)的新方法。 VCP-FC使用更多的位来将精确的网络负载因子传递回终端系统。终端系统根据负载因子和吞吐量的变化率计算公平带宽,然后快速调整拥塞窗口以接近公平带宽。 VCP-FC有效地缩短了公平收敛时间,同时提高了VCP的效率和公平性。最后,使用ns2仿真评估了VCP-FC的性能。

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