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TCP_SDF: Transport Control to Achieve Smooth Data Flow at a Stable Throughput

机译:TCP_SDF:传输控制以稳定的吞吐量实现平稳的数据流

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摘要

Various large-scale network applications demand different levels of stable bandwidth to perform bulk data movement, which is not adequately supported by current transport methods. We propose a novel end-to-end transport control protocol, (TCP_SDF), which achieves smooth data flow at a stable good put level. TCP_SDF dynamically adjusts the congestion window based on the estimate of the current sending rate, good put, and target level. The adjustment terms are weighted by the step-sizes, which are non-negative numbers that eventually die down to zero as specified by the classical Robbins-Monro Stochastic Approximation conditions. TCP_SDF decreases the congestion control window size by a factor that is proportional to the estimated number of packets in the bottleneck queue in the presence of network congestion. TCP_SDF can be readily implemented in practice as a loadable kernel module in Linux. We demonstrate the superior performance of TCP SDF under a range of scenarios using experimental measurements.
机译:各种大型网络应用程序需要不同级别的稳定带宽来执行批量数据移动,而当前的传输方法并不能充分支持这种情况。我们提出了一种新颖的端到端传输控制协议(TCP_SDF),该协议以稳定的良好放置级别实现了平稳的数据流。 TCP_SDF根据对当前发送速率,良好状态和目标级别的估计来动态调整拥塞窗口。调整项由步长加权,步长是非负数,最终会减少到零,这是经典的Robbins-Monro随机逼近条件所指定的。在存在网络拥塞的情况下,TCP_SDF将拥塞控制窗口的大小减小一个比例,该比例与瓶颈队列中估计的数据包数量成比例。实际上,TCP_SDF可以很容易地实现为Linux中的可加载内核模块。我们通过实验测量证明了在各种情况下TCP SDF的优越性能。

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