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Performance Analysis of the TXOP Scheme in IEEE 802.11e WLANs with Bursty Error Channels

机译:突发错误信道IEEE 802.11e WLAN中TXOP方案的性能分析

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To support the differentiated Quality-of-Service (QoS) and improve the utilization of the scarce wireless bandwidth, the IEEE 802.11e standard specifies an efficient burst transmission scheme referred to as the Transmission Opportunity (TXOP). Recently, analytical models have been reported to evaluate the performance of the TXOP scheme. However, most of these models were developed under the assumptions of the ideal channels or uniform error channels which fail to capture the characteristics of bursty and correlated channel errors in the practical wireless environment. In this paper, we propose an analytical model for the TXOP scheme in WLANs in the presence of bursty error channels. To this end, the transmission queue of each station is modelled by a two-state continuous time Markov chain. This model can be adopted to obtain the performance metrics including the throughput and buffer overflow probability. The accuracy of the analytical model is validated via NS-2 simulation experiments. Utilizing the proposed model, we investigate the impact of traffic loads, TXOP limit, and the number of stations on the performance of the TXOP scheme under various channel conditions.
机译:为了支持差异化的服务质量(QoS)并改善稀缺无线带宽的利用,IEEE 802.11e标准指定了称为传输机会(TXOP)的有效突发传输方案。最近,据报道,分析模型评估了TXOP方案的性能。然而,大多数这些模型是在理想通道的假设或均匀误差通道的假设下开发的,这不能捕获实际无线环境中的突发和相关信道错误的特征。在本文中,我们提出了一种在突发错误信道存在下WLAN中TXOP方案的分析模型。为此,每个站的传输队列由两个状态连续时间马尔可夫链建模。可以采用该模型来获取包括吞吐量和缓冲溢出概率的性能指标。通过NS-2仿真实验验证了分析模型的准确性。利用所提出的模型,我们调查了交通负荷,TXOP限制和站点对各种信道条件下TXOP方案的影响的影响。

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