一类基于随机逼近的可靠udp传输协议

C. Wu, N. Rao
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引用次数: 17

摘要

近十年来,互联网骨干链路的容量不断提高,但在应用层面,特别是在高性能应用中,这种提高尚未得到充分实现。由于难以优化配置其参数(如缓冲区大小、AIMD系数和慢启动转换点),复杂而单一的TCP-AIMD动态在很大程度上导致了低吞吐量。在本文中,我们提出了一类新的基于udp的传输协议,它利用基于随机逼近方法的速率控制方案来实现应用层的高吞吐量。这些协议根据网络连接的统计行为动态调整响应确认和损失的源速率,从而围绕吞吐量回归曲线的局部最大值运行。分析表明,该协议产生了一个tcp友好的流,并且在单调损失率条件下随机收敛到最大吞吐量。我们的实现在具有不同特征的各种互联网连接上实现了非常健壮的性能:它跟踪了时变交叉流量存在的峰值吞吐量,并始终实现了默认TCP吞吐量的2-5倍,而不会显著影响并发的常规流量。
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A class of reliable UDP-based transport protocols based on stochastic approximation
The capacities of Internet backbone links have been continuously improving over the last decade, but such improvements have not been fully realized at the application level, particularly in high-performance applications. The complicated and monolithic TCP-AIMD dynamics are responsible to a large degree for low throughputs as a result of the difficulty in optimally configuring its parameters such as buffer sizes, AIMD coefficients, and slow-start transition points. In this paper, we propose a new class of UDP-based transport protocols that utilize a rate control scheme founded on the stochastic approximation method to achieve high throughputs at the application level. These protocols operate around a local maximum of the throughput regression curve by dynamically adjusting the source rate in response to acknowledgements and losses based on the statistical behavior of the network connection. We analytically show that this protocol generates a TCP-friendly flow, and also stochastically converges to the maximum throughput under a monotone loss rate condition. Our implementation achieved very robust performance over diverse Internet connections with different characteristics: it tracked the peak throughput in presence of time-varying cross traffic and consistently achieved 2-5 times the throughput of default TCP without significantly affecting the concurrent regular traffic.
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