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Performance Evaluation for WiFi DCF Networks from Theory to Testbed

机译:从理论到试验台,WiFi DCF网络的性能评估

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摘要

Distributed Coordination Function (DCF) is a basic MAC protocol used in the world-wide WiFi networks and plays a key role in determining the network performance, especially in situations with a large number of users and high-density Access Point (AP) deployed. To achieve a better understanding of the real-world performance o7 802.11 DCF networks, we have constructed an emulation platform and a prototype testbed for performance evaluation. The design and implementation of these two platforms are discussed in this paper. The key DCF parameters, i.e., the initial contention window size (CWmin) and the maximum contention window size (CWmax), are tuneable so that we are able to study the impact o7 these DCF parameters on the network performance. These experiment results are compared against with a recently proposed unified analytical framework to examine the model assumptions and system performance bottlenecks. Our results demonstrate that by adapting the values of CWmin based on WiFi traffic load, the maximal network throughput can be achieved, and the optimal value of CWmin varies when the network size changes. As a reality check, the emerging software defined WiFi network architecture can be optimized for performance enhancement guided by this unified performance model.
机译:分布式协调功能(DCF)是全球WiFi网络中使用的基本MAC协议,并且在确定网络性能(尤其是在部署大量用户和部署高密度接入点(AP)的情况)中起着关键作用。为了更好地了解802.11 DCF网络的实际性能,我们构建了一个仿真平台和一个用于性能评估的原型测试台。本文讨论了这两个平台的设计和实现。 DCF的关键参数(即初始争用窗口大小(CW min )和最大争用窗口大小(CW max ))是可调的,因此我们能够进行研究这些DCF参数对网络性能的影响。将这些实验结果与最近提出的统一分析框架进行了比较,以检查模型假设和系统性能瓶颈。我们的结果表明,通过基于WiFi流量负载调整CW min 的值,可以实现最大的网络吞吐量,并且当网络连接时CW min 的最佳值会有所不同大小变化。作为现实检查,可以通过这种统一的性能模型优化新兴的软件定义的WiFi网络体系结构,以提高性能。

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