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A Piecewise Packet Mapping Algorithm for Video Transmission over 802.11e Wireless Networks

机译:用于802.11e无线网络上的视频传输分段数据包映射算法

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The 802.11e EDCA can deliver quality of service for video transmission over wireless networks during traffic congestions based on the techniques of multiple access category (AC) queues and virtual collision, but its performance is limited by the first-in-first-out (FIFO) characteristic of the reserved AC_VI queue. In order to offer further service differentiation among video packets based on their video frame importance and achieve more enhancement on video transmission quality, this paper proposes a novel probabilistic packet mapping algorithm called Piecewise Mapping. Depending on the congestion level of AC_VI, the proposed algorithm can actively manage AC_VI by proposing four downward transition phases to decide the mapping probabilities among AC_VI and the lower-priority ACs. The four phases include zero transition phase in light congestion, full transition phase in heavy congestion, and two proportional transition phases in medium congestion between the low and high thresholds of the AC_VI queue length. The downward mapping between the two lower ACs is decided by which queue length is shorter. Our results show that the proposed Piecewise Mapping algorithm outperforms the existing works, including EDCA and Adaptive Mapping. Under various congestion levels, the gains can be as high as 4.84 dB and 4.33 dB respectively.
机译:802.11e EDCA可以根据多访问类别(AC)队列和虚拟碰撞的技术,为无线网络提供视频传输的服务质量,但其性能受到首先一级的(FIFO )保留的AC_VI队列的特征。为了基于视频帧的重要性提供视频数据包之间的进一步服务差异,实现了对视频传输质量的更多增强,提出了一种新颖的概率分组映射算法,称为分段映射。根据AC_VI的拥塞级别,所提出的算法可以通过提出四个向下转换阶段来主动管理AC_VI,以确定AC_VI和较低优先级AC之间的映射概率。四个阶段包括在光充血中的零转变阶段,重大过渡相位,并且在AC_VI队列长度的低阈值和高阈值之间的中等拥塞中的两个比例转变相位。两个下ACS之间的向下映射决定,队列长度较短。我们的研究结果表明,所提出的分段映射算法优于现有的作品,包括EDCA和自适应映射。在各种拥堵水平下,增益可以分别高达4.84dB和4.33 dB。

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