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Contention-Based Airtime Usage Control in Multirate IEEE 802.11 Wireless LANs

机译:多速率IEEE 802.11无线局域网中基于竞争的通话时间使用控制

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In a multirate wireless LAN, wireless/mobile stations usually adapt their transmission rates to the channel condition. It is difficult to control each station's usage of network resources since the shared channel can be overused by low transmission-rate stations. To solve this problem, we propose a distributed control of stations' airtime usage which 1) always guarantees each station to receive a specified share of airtime, and 2) keeps service for individual stations unaffected by other stations' transmission rates. Such airtime control enables service differentiation or quality of service (QoS) support. Moreover, it can achieve a higher overall system throughput. The proposed airtime usage control exploits the Enhanced Distributed Channel Access (EDCA) of the IEEE 802.11e standard . Two control mechanisms are proposed: one based on controlling the station's arbitration inter-frame space (AIFS) and the other based on the contention window size. We show how the stations' airtime usage is related to the AIFS and contention window size parameters. Using this relation, two analytical models are developed to determine the optimal control parameters. Unlike the other heuristic controls or analytical models, our model provides handles or parameters for quantitative control of stations' airtime usage. Our evaluation results show that a precise airtime usage control can be achieved in a multirate wireless LAN
机译:在多速率无线LAN中,无线/移动台通常会根据信道条件调整其传输速率。由于共享信道可能会被低传输速率的站点过度使用,因此很难控制每个站点对网络资源的使用。为了解决这个问题,我们提出了一种分布式控制站点的通话时间的使用方式:1)始终保证每个站点接收指定的通话时间份额; 2)保持各个站点的服务不受其他站点传输速率的影响。这种通话时间控制可实现服务差异化或服务质量(QoS)支持。而且,它可以实现更高的整体系统吞吐量。所提出的通话时间使用控制利用了IEEE 802.11e标准的增强型分布式信道访问(EDCA)。提出了两种控制机制:一种基于控制站点的仲裁帧间间隔(AIFS),另一种基于竞争窗口大小。我们展示了电台的通话时间使用情况如何与AIFS和竞争窗口大小参数相关。利用这种关系,开发了两个分析模型来确定最佳控制参数。与其他启发式控件或分析模型不同,我们的模型提供了用于定量控制电台通话时间使用情况的句柄或参数。我们的评估结果表明,在多速率无线局域网中可以实现精确的通话时间使用控制

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