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An Efficient Backoff Scheme for IEEE 802.11e EDCF Differential Service

机译:IEEE 802.11e EDCF差分服务的高效退避方案

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摘要

Wireless LANs (WLANs) are one of the fastest growing wireless access technologies. Unfortunately, since they were developed to closely match existing wired LANs, the popular IEEE 802.11 standards have several problems in providing Quality of Service (QoS) to stations. The IEEE 802.11e standard is being developed to overcome these drawbacks. One of most important function in 802.11e is the contention-based channel access mechanism called enhanced distributed coordination function (EDCF), which provides a priority scheme by differentiating the inter-frame space and the initial window size. In this paper, we first consider the enhanced DCF access method of IEEE 802.11e. We then introduced analytical model, which can be used to calculate the traffic priority and throughput corresponding to the configuration of multiple DCF contention parameters under saturation throughput. This enhanced DCF access method differs from the standard backoff schemes in that the backoff time is not uniformly chosen in the contention window interval that results in reduced collision probability under high loads. Numerical analysis shows that saturation throughput of the proposed scheme outperform the earlier approach.
机译:无线局域网(WLAN)是增长最快的无线访问技术之一。不幸的是,由于它们是为了与现有的有线LAN紧密匹配而开发的,因此流行的IEEE 802.11标准在向站点提供服务质量(QoS)方面存在多个问题。为了克服这些缺点,正在开发IEEE 802.11e标准。 802.11e中最重要的功能之一是基于竞争的信道访问机制,称为增强型分布式协调功能(EDCF),该机制通过区分帧间空间和初始窗口大小来提供优先级方案。在本文中,我们首先考虑IEEE 802.11e的增强型DCF访问方法。然后,我们引入了解析模型,该模型可用于计算在饱和吞吐量下与多个DCF竞争参数的配置相对应的流量优先级和吞吐量。此增强的DCF访问方法与标准退避方案的不同之处在于,在争用窗口间隔中未统一选择退避时间,这会导致在高负载下降低冲突概率。数值分析表明,所提方案的饱和吞吐率优于早期方法。

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