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TCP-friendly SIMD Congestion Control and Its Convergence Behavior

机译:TCP友好的SIMD拥塞控制及其收敛行为

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摘要

The increased diversity of Internet application requirements has spurred recent interests in flexible congestion control mechanisms. Window-based congestion control schemes use increase rules to probe available bandwidth, and decrease rules to back off when congestion is detected. The parameterization of these control rules is done so as to ensure that the resulting protocol is TCP-friendly in terms of the relationship between throughput and packet loss rate. In this paper, we propose a novel window-based congestion control algorithm called SIMD (Square-Increase/Multiplicative-Decrease). Contrary to previous memory-less controls, SIMD utilizes history information in its control rules. It uses multiplicative decrease but the increase in window size is in proportion to the square of the time elapsed since the detection of the last loss event. Thus, SIMD can efficiently probe available bandwidth. Nevertheless, SIMD is TCP-friendly as well as TCP-compatible under RED, and it has much better convergence behavior than TCP-friendly AIMD and binomial algorithms proposed recently.
机译:Internet应用程序要求的日益多样化激发了人们对灵活的拥塞控制机制的最新兴趣。基于窗口的拥塞控制方案使用增加规则来探查可用带宽,并使用减少规则以在检测到拥塞时退避。完成这些控制规则的参数设置,以确保就吞吐量和丢包率之间的关系而言,所得的协议对TCP友好。在本文中,我们提出了一种新的基于窗口的拥塞控制算法,称为SIMD(平方增加/乘法减少)。与以前的无内存控件相反,SIMD在其控制规则中使用了历史信息。它使用乘法减少,但窗口大小的增加与自检测到最后一次丢失事件以来经过的时间的平方成比例。因此,SIMD可以有效地探测可用带宽。尽管如此,SIMD在RED下还是TCP友好的和TCP兼容的,并且比最近提出的TCP友好的AIMD和二项式算法具有更好的收敛性能。

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