IEEE 802.11n中A-MPDU和A-MSDU聚合的性能分析

B. Ginzburg, A. Kesselman
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引用次数: 126

摘要

随着物理层(PHY)技术的改进,无线局域网(wlan)的可实现容量显著增长。然而,IEEE 802.11 MAC层的开销限制了WLAN的实际吞吐量。IEEE 802.11n草案中建议的a - mpdu聚合是减少协议时间开销的关键增强,可以将多个mac级协议数据单元(mpdu)聚合为单个PHY协议数据单元(PPDU)。IEEE 802.11n中提出的另一种聚合方案是a - msdu聚合,它允许将多个mac级的msdu (service data unit)聚合到单个MPDU中。在这项工作中,我们提出了一个新的分析模型,用于估计站和接入点(AP)之间的802.11n高吞吐量无线链路的性能。我们考虑了一个2 × 2 MIMO系统,并研究了TCP和UDP流量下的MAC goodput如何受到聚合大小、数据包错误率和PHY设置的影响。我们的结果表明,对于UDP流量,a - mpdu聚合允许在理想情况下实现95%的高通道利用率,而没有聚合,通道利用率仅受33%的限制。我们还表明,A-MPDU聚合优于A-MSDU聚合,后者的性能在高数据包错误率和高PHY速率下显着降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance analysis of A-MPDU and A-MSDU aggregation in IEEE 802.11n
With recent improvements in physical layer (PHY) techniques, the achievable capacity for wireless LANs (WLANs) has grown significantly. However, the overhead of IEEE 802.11 MAC layer has limited the actual throughput of a WLAN. A-MPDU aggregation suggested in IEEE 802.11n draft is a key enhancement reducing the protocol timing overheads that enables aggregation of several MAC-level protocol data units (MPDUs) into a single PHY protocol data unit (PPDU). Another aggregation scheme proposed in IEEE 802.11n is A-MSDU aggregation, which allows several MAC-level service data units (MSDUs) to be aggregated into a single MPDU. In this work we present a novel analytic model for estimating the performance of a 802.11n high throughput wireless link between a station and an Access Point (AP). We consider a 2 times 2 MIMO system and investigate how the MAC goodput under TCP and UDP traffic is affected by the aggregation size, packet error rate and PHY settings. Our results demonstrate that for UDP traffic, A-MPDU aggregation allows to achieve a high channel utilization of 95% in the ideal case while without aggregation the channel utilization is limited by just 33%. We also show that A-MPDU aggregation outperforms A-MSDU aggregation, whose performance considerably degrades for high packet error rates and high PHY rates.
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