高吞吐量无线接入网的动态链路自适应

Raja Karmakar, Samiran Chattopadhyay, Sandip Chakraborty
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引用次数: 19

摘要

引入IEEE 802.11n和IEEE 802.11ac修订版,通过对物理层(PHY)和介质访问控制(MAC)子层进行修改,实现无线局域网(wlan)的高吞吐量。无线信道是由多个异构无线站共享的时变系统。每个无线站都应该能够通过调整链路属性来动态调整其传输速率,否则高传输失败可能会导致系统性能降低。在本文中,我们提出了一种闭环、跨层和基于统计的链路自适应算法,称为高吞吐量无线链路自适应(HiWiLA),用于高吞吐量无线网络(tt - wlan),其中链路自适应度量由信道的“接收信号强度指标”(RSSI)和观察到的MAC吞吐量计算,考虑信道绑定、短保护间隔(SGI)、帧聚合和不同的调制和编码方案(MCS)级别。我们通过仿真和实际测试平台分析了所提出方案的性能,并表明HiWiLA比现有的最先进方案平均提高了10% - 70%的吞吐量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic link adaptation for High Throughput wireless access networks
IEEE 802.11n and IEEE 802.11ac amendments of IEEE 802.11 standard are introduced to achieve high throughput in wireless local area networks (WLANs) with modifications in both Physical layer (PHY) and Medium Access Control (MAC) sublayer. Wireless channels are time-varying systems which are shared by multiple heterogeneous wireless stations. Every wireless station should be capable to tune dynamically its transmission rate by tuning the link properties, otherwise high transmission failures may lead to impose low system performance. In this paper, we propose a closed-loop, cross-layer and statistic-based link adaptation algorithm called High Throughput Wireless Link Adaptation (HiWiLA) for high throughput wireless networks (HT-WLANs) where the metric of link adaptation is computed by “Received Signal Strength Indicator” (RSSI) of channel and observed MAC throughput considering channel bonding, short guard interval (SGI), frame aggregation and different Modulation and Coding Scheme (MCS) levels. We analyze the performance of the proposed scheme through simulation and a practical testbed, and show that HiWiLA achieves on average 10% - 70% better throughput than the existing state of the art schemes.
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