饱和条件下IEEE 802.11e EDCA网络中应用分片重传聚合的分析分析

Emna Charfi, L. Chaari, L. Kamoun
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引用次数: 3

摘要

随着IEEE 802.11设备的普及,无线局域网在过去十年中经历了巨大的发展。802.11的第一个介质访问控制(MAC)技术被称为分布式协调功能(DCF)。为了提高吞吐量,IEEE 802.11n的TGn组开发了新的机制访问控制技术。AFR机制的主要目的是从包含多个聚合包的大帧中只重传损坏的片段,从而减少开销。本文在计算DCF和AFR机制饱和吞吐量的基础上,对带分片重传的聚合进行了理论分析。我们提供了一个简单准确的分析模型来计算最大MAC吞吐量,以评估AFR的性能。研究了AFR在IEEE 802.11EDCA差异化业务中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analytical analysis of applying aggregation with fragment retransmission on IEEE 802.11e EDCA network in saturated conditions
Wireless local area networking has experienced tremendous growth in the last ten years with the proliferation of IEEE 802.11 devices. The first IEEE 802.11 Medium Access Control (MAC) technique of 802.11 is called Distributed Coordination Function (DCF. In order to enhance the throughput, new mechanism access control techniques are developed by TGn group of IEEE 802.11n. The main purpose of AFR mechanism is to retransmit only the corrupted fragment from large frame including multiple aggregated packets that leads to overhead reduction. This paper investigates a theoretical analysis of Aggregation with fragment retransmission, based on computing saturation throughput for DCF and AFR mechanisms. We provide a simple and accurate analytical model to calculate the Maximum MAC throughput to evaluate performances of AFR. We study the application of AFR on differentiated IEEE 802.11EDCA services.
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