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Layer 2 vs. layer 3 mechanisms for improving TCP performance in 802.11 wireless LANs

机译:在802.11无线局域网中提高TCP性能的第2层与第3层机制

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Access points in 802.11 wireless networks suffer from performance problems because of insufficient resources at layer 2 — the DCF (Distributed Control Function) access method provides equal access probability to all devices in a wireless cell including the access point itself. Consequently, performance degrades and contention between uploads and downloads can lead to the familiar TCP unfairness problem [1]. In this paper, we study the measured performance of mechanisms at different layers for improving TCP performance in 802.11 wireless LANs. At layer 2, we consider the AAP (Asymmetric Access Point) solution that keeps low buffer occupancy at the access point. At layer 3, we consider LAS-ACK, an adaptation of the Least Attained Service (LAS) policy for wireless LANs that aims at minimizing the average queue size by giving priority to the shortest connections. Using an experimental testbed, we demonstrate that AAP is a good solution especially for multimedia (delay and jitter sensitive) transfers as long as upload traffic is low. On the other hand, LAS-ACK is very efficient at minimizing the durations of most upload and download transfers as long as the distribution of flow sizes is skewed enough. The price to pay for combining LAS-ACK and AAP is the requirement of deploying LAS-ACK on all wireless stations and not only at the access point. The resulting solution actually combines the positive effects of both solutions as LAS-ACK is less sensible to the distribution of flow sizes, while multimedia flows benefit from the short queue size at the access point.
机译:802.11无线网络中的接入点由于第2层上的资源不足而遭受性能问题-DCF(分布式控制功能)接入方法为无线小区中的所有设备(包括接入点本身)提供了相等的接入概率。因此,性能会下降,上传和下载之间的争用会导致常见的TCP不公平问题[1]。在本文中,我们研究了在802.11无线LAN中提高TCP性能的不同层上的机制的测量性能。在第2层,我们考虑AAP(非对称访问点)解决方案,该解决方案在访问点处保持较低的缓冲区占用率。在第3层,我们考虑LAS-ACK,这是针对无线LAN的最差服务(LAS)策略的一种改编,旨在通过优先考虑最短的连接来最小化平均队列大小。使用一个实验性测试平台,我们证明只要上传流量很低,AAP是一个很好的解决方案,特别是对于多媒体(延迟和抖动敏感)传输而言。另一方面,只要流大小的分布足够偏斜,LAS-ACK在最小化大多数上载和下载传输的持续时间方面非常有效。结合LAS-ACK和AAP所要付出的代价是在所有无线站上并且不仅在接入点上部署LAS-ACK的要求。最终的解决方案实际上结合了这两种解决方案的积极效果,因为LAS-ACK对流大小的分布不太敏感,而多媒体流则受益于接入点的短队列大小。

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