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Analysis of a fountain codes based transport in an 802.11 WLAN cell

机译:分析基于喷泉码的802.11 WLAN单元中的传输

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A Fountain Codes based Transport (FCT) protocol relies on an alternate paradigm to that of the ubiquitous TCP. It abolishes the need for a reverse feedback mechanism usually essential to provide reliability in packet data transmission. Absence of a reverse feedback mechanism can substantially improve the performance of networks with half-duplex wireless channels (such as 802.11 WLANs), where collisions between forward and reverse MAC frame transmissions contribute significantly towards performance degradation. We propose a Markovian stochastic framework to model the performance of a simple FCT protocol in a single cell IEEE 802.11 WLAN. Our model allows the WLAN Access Point to employ a generic rate control algorithm for MAC frame transmissions on the downlink. Using renewal theory we provide an explicit expression for the average downlink throughput. ns2 simulations are used to validate our model and the analytically obtained throughput metric. A detailed performance analysis study is then carried out to provide insights into the choice of various system parameters that can lead to optimal throughput performance. Finally we present a brief comparison between the performance of FCT and TCP through simulations.
机译:基于源代码的传输(FCT)协议依赖于无处不在的TCP的替代范例。消除了对通常对于提供分组数据传输的可靠性必不可少的反向反馈机制的需要。缺少反向反馈机制可以大大提高具有半双工无线信道(例如802.11 WLAN)的网络的性能,其中前向和反向MAC帧传输之间的冲突会显着降低性能。我们提出了一个马尔可夫随机框架,以对单个单元IEEE 802.11 WLAN中的简单FCT协议的性能进行建模。我们的模型允许WLAN接入点对下行链路上的MAC帧传输采用通用的速率控制算法。使用更新理论,我们为平均下行链路吞吐量提供了一个明确的表达式。 ns2仿真用于验证我们的模型和以解析方式获得的吞吐量指标。然后进行了详细的性能分析研究,以洞悉可以导致最佳吞吐量性能的各种系统参数的选择。最后,我们通过仿真简要介绍了FCT和TCP的性能。

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