蜂窝网络中TCP拥塞控制对缓冲膨胀的影响

Stefan Alfredsson, G. Giudice, Johan Garcia, A. Brunström, L. D. Cicco, S. Mascolo
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引用次数: 38

摘要

网络缓冲区过大且填充过满的现象(即bufferbloat)最近作为对延迟敏感的应用程序的主要性能问题引起了人们的关注。可能出现缓冲膨胀的一个重要网络场景是蜂窝网络。本文研究了蜂窝网络中TCP拥塞控制与缓冲之间的相互作用。在商用3G、3.5G和4G蜂窝网络中进行了大量的测量,使用CUBIC、NewReno和Westwood+拥塞控制算法混合了长、短TCP流。结果表明,引入长流交通时,短流的完成时间显著增加。这是由于长流量的缓冲区占用增加造成的。此外,对于3G和3.5G,完成时间在很大程度上取决于用于后台流的拥塞控制算法,CUBIC导致完成时间明显更大。
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Impact of TCP congestion control on bufferbloat in cellular networks
The existence of excessively large and too filled network buffers, known as bufferbloat, has recently gained attention as a major performance problem for delay-sensitive applications. One important network scenario where bufferbloat may occur is cellular networks. This paper investigates the interaction between TCP congestion control and buffering in cellular networks. Extensive measurements have been performed in commercial 3G, 3.5G and 4G cellular networks, with a mix of long and short TCP flows using the CUBIC, NewReno and Westwood+ congestion control algorithms. The results show that the completion times of short flows increase significantly when concurrent long flow traffic is introduced. This is caused by increased buffer occupancy from the long flows. In addition, for 3G and 3.5G the completion times are shown to depend significantly on the congestion control algorithms used for the background flows, with CUBIC leading to significantly larger completion times.
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