Quantifying the transient performance of congestion control algorithms

Yixin Shen, Zili Meng, Jing Chen, Mingwei Xu
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引用次数: 1

Abstract

Congestion control algorithms (CCA) are devoted to improve their performance on long-term metrics (e.g., throughput, fairness), whereas the increasing low-latency application demand poses strict requirements on and motivates us to evaluate the transient performance of CCAs. However, due to the complexity of existing CCAs and changeable network conditions, it is challenging to quantify the transient performance. Our observation is that the transient performance could be modelled as damped oscillations. In this poster, we propose a framework to quantify the transient performance by calculating the extent of the damped oscillation. We use our framework to evaluate 3 widely-deployed CCAs and offer a comparison between their transient performance.
量化拥塞控制算法的瞬态性能
拥塞控制算法(CCA)致力于提高其长期指标(例如,吞吐量,公平性)的性能,而不断增长的低延迟应用需求对CCA的瞬态性能提出了严格的要求,并促使我们评估CCA的瞬态性能。然而,由于现有cca的复杂性和多变的网络条件,对其暂态性能进行量化是一项挑战。我们的观察是,瞬态性能可以建模为阻尼振荡。在这张海报中,我们提出了一个框架,通过计算阻尼振荡的程度来量化瞬态性能。我们使用我们的框架来评估3个广泛部署的cca,并对它们的瞬态性能进行比较。
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