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Airtime Fairness for IEEE 802.11 Multirate Networks

机译:IEEE 802.11多速率网络的通话时间公平性

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Under a multi rate network scenario, the IEEE 802.11 DCF MAC fails to provide air-time fairness for all competing stations since the protocol is designed for ensuring max-min throughput fairness and the maximum achievable throughput by any station gets bounded by the slowest transmitting peer. In this paper, we present an analytical model to study the delay and throughput characteristics of such networks so that rate anomaly problem of IEEE DCF multi-rate networks could be mitigated. We call our proposal as Time Fair CSMA (TFCSMA) which utilizes an interesting baseline property of estimating a target throughput for each competing station so that its minimum contention window could be mitigated in a distributed manner. As opposed to the previous work in this area, TFCSMA is ideally suited for practical scenarios where stations frequently adapt their data rates to changing channel conditions. In addition, TFCSMA also accounts for packet errors due to the time varying properties of the wireless channel. We thoroughly compare the performance of our proposed protocol with IEEE 802.11 and other existing protocols, under different network scenarios and traffic conditions. Our comprehensive simulations validate the efficacy of our method towards providing high throughput and time fair channel allocation.
机译:在多速率网络情况下,IEEE 802.11 DCF MAC无法为所有竞争的站点提供空中时间公平性,因为该协议旨在确保最大-最小吞吐量公平性,并且任何站点的最大可实现吞吐量都受到最慢的传输对等方的限制。在本文中,我们提出了一个分析模型来研究此类网络的延迟和吞吐量特性,从而可以缓解IEEE DCF多速率网络的速率异常问题。我们将我们的建议称为“时间公平CSMA(TFCSMA)”,它利用了一个有趣的基线属性来估计每个竞争站点的目标吞吐量,从而可以以分布式方式缓解其最小竞争窗口。与该领域的先前工作相反,TFCSMA非常适合于实际情况,在这些情况下,站点经常根据不断变化的信道条件调整其数据速率。另外,由于无线信道的时变特性,TFCSMA还考虑了分组错误。我们将在不同的网络场景和流量条件下,将提议的协议与IEEE 802.11和其他现有协议的性能进行全面比较。我们全面的仿真验证了我们的方法在提供高吞吐量和时间公平的信道分配方面的功效。

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