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Performance analysis of collision alleviating distributed coordination function protocol in congested wireless networks - a markov chain analysis

机译:拥塞无线网络中缓解冲突的分布式协调功能协议的性能分析-Markov链分析

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摘要

IEEE 802.11 is the most popular wireless local area network (WLAN) standard in use. WLANs support broadband multimedia communication and hence providing quality of service requirements such as good throughput and minimum endto- end delay are the two main challenging issues in designing of WLAN protocols for supporting real-time applications. Until now, several Markov chain models have been developed to evaluate and to enhance the performance of the IEEE 802.11 distributed coordination function (DCF) protocol. However, these models cannot accurately predict the performance of the network. Also, the existing models suffer with high packet collisions resulting in degradation of throughput and end-to-end delay particularly under congested environments. This study proposes an exact Markov chain model to accurately predict the performance of the wireless networks. To alleviate the collisions and to avoid channel capture effect, the authors introduce a post-backoff stage to provide inter packet backoff (IPB) delay between successive packet transmissions. The analysis is carried out by considering the non-saturated traffic and the impact of channel errors because of Rayleigh fading. Results show significant improvement in throughput and reduction in delay using the proposed model when compared with the existing models.
机译:IEEE 802.11是正在使用的最流行的无线局域网(WLAN)标准。 WLAN支持宽带多媒体通信,因此提供服务质量要求(例如良好的吞吐量和最小的端到端延迟)是设计用于支持实时应用的WLAN协议中的两个主要挑战性问题。到目前为止,已经开发了几种马尔可夫链模型来评估和增强IEEE 802.11分布式协调功能(DCF)协议的性能。但是,这些模型无法准确预测网络性能。而且,现有模型遭受高分组冲突的困扰,特别是在拥挤的环境下,这导致吞吐量的下降和端到端延迟。这项研究提出了一个精确的马尔可夫链模型来准确预测无线网络的性能。为了减轻冲突并避免信道捕获效应,作者引入了一个后退阶段,以在连续的分组传输之间提供分组间退避(IPB)延迟。通过考虑非饱和流量以及由于瑞利衰落引起的信道错误的影响来进行分析。结果表明,与现有模型相比,使用该模型可以显着提高吞吐量并减少延迟。

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  • 来源
    《Networks, IET》 |2013年第4期|204-213|共10页
  • 作者单位

    Department of ECE, AU Engineering College, Andhra University, Visakhapatnam, India|c|;

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