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TCP congestion control algorithm for heterogeneous Internet

机译:异构Internet的TCP拥塞控制算法

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The available bandwidth, round trip time (UT) and packet loss rate can vary over many orders of magnitude, which characterizes the heterogeneity of the Internet. To cope with the heterogeneity in Internet congestion control, we propose a new TCP protocol known as INVS that contains three key components: (1) INVS employs an exponential-function-based growth function of the congestion window, which is more efficient than the cubic function in CUBIC; (2) INVS introduces an adaptive increase factor into the growth function to ensure that the window growth rate matches the path condition, and this increase factor measures the path condition using a custom function of the available bandwidth and minimum RTT; (3) INVS adopts an adaptive queue threshold in the loss classification scheme to improve the performance of TCP over lossy links. In addition, INVS requires modification only on the TCP sender and traces the path capacity to enable quick convergence of the congestion window. The performance analysis and evaluation show that INVS achieves good throughput, fairness, RTT-fairness and utilization in heterogeneous networks. (C) 2016 Elsevier Ltd. All rights reserved.
机译:可用带宽,往返时间(UT)和丢包率可以在多个数量级上变化,这代表了Internet的异构性。为了应对Internet拥塞控制中的异构性,我们提出了一种称为INVS的新TCP协议,该协议包含三个关键组件:(1)INVS使用了基于指数函数的拥塞窗口的增长函数,它比三次函数的效率更高。在CUBIC中发挥作用; (2)INVS在增长函数中引入了自适应增加因子,以确保窗口增长率与路径条件相匹配,并且该增加因子使用可用带宽和最小RTT的自定义函数来测量路径条件; (3)INVS在损失分类方案中采用自适应队列阈值,以提高有损链路上TCP的性能。此外,INVS仅需要在TCP发送方上进行修改,并跟踪路径容量以实现拥塞窗口的快速收敛。性能分析和评估表明,INVS在异构网络中具有良好的吞吐量,公平性,RTT公平性和利用率。 (C)2016 Elsevier Ltd.保留所有权利。

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