IEEE 802.11n无线网络缓冲膨胀的实证评估

Ahmad J. Showail, Kamran Jamshaid, B. Shihada
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引用次数: 15

摘要

在本文中,我们分析了在IEEE 802.11n无线网络中,持续充满的大型缓冲区(' bufferbloat')对各种网络动态的影响。Bufferbloat主要是在有线网络的背景下研究的。我们研究了bufferbloat对各种无线网络拓扑结构的影响,包括无线局域网(WLAN)和多跳无线网络。我们的结果表明,两个Linux无线主机之间的单个FTP传输会使网络堆栈中的缓冲区饱和,导致在多跳配置中RTT延迟超过4.5 s。我们证明了设计良好的聚合MAC协议数据单元(A-MPDU) MAC层帧聚合可以减少RTT延迟,同时增加网络吞吐量。然而,可能仍然需要额外的措施来满足实时流(如VoIP)的限制。实验表明,在基于停车场的多跳网络中,过大的缓冲区会降低速率分配的公平性。
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An empirical evaluation of bufferbloat in IEEE 802.11n wireless networks
In this paper, we analyze the impact of large, persistently-full buffers (`bufferbloat') on various network dynamics in IEEE 802.11n wireless networks. Bufferbloat has mostly been studied in the context of wired networks. We study the impact of bufferbloat on a variety of wireless network topologies, including wireless LAN (WLAN) and multi-hop wireless networks. Our results show that a single FTP transfer between two Linux wireless hosts can saturate the buffers in the network stack, leading to RTT delays exceeding 4.5 s in multi-hop configurations. We show that well-designed Aggregate MAC Protocol Data Unit (A-MPDU) MAC-layer frame aggregation can reduce RTT delays while simultaneously increasing network throughput. However, additional measures may still be required to meet the constraints of real-time flows (such as VoIP). Our experiments show that large buffers can deteriorate the fairness in rate allocation in parking lot based multi-hop networks.
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