首页> 外文会议> >Impact of Retransmission Delays on Multilayer Video Streaming over IEEE 802.1le Wireless Networks
【24h】

Impact of Retransmission Delays on Multilayer Video Streaming over IEEE 802.1le Wireless Networks

机译:重发延迟对IEEE 802.1le无线网络上的多层视频流的影响

获取原文

摘要

In this paper, we seek to establish probabilistic bounds of retransmission delays for transporting multilayer video frames over IEEE 802.11e QAP/QSTA with enhanced MAC distributed coordination function (EDCF). We consider an end-to-end multilayer video streaming that uses hybrid FEC/ARQ error detection and control. Under multiple priority levels of IEEE 802.11e MAC EDCF, we first establish steady-state collision probabilities and contention resolution delays, given the number of nodes. We introduce a time-varying Rayleigh slow-fading channel error model and studying its effect on MAC EDCF transmissions. For video transmissions, we model the expected waiting time of EDCF MAC video queue using Head-of-Line (HOL) priority queueing discipline using the MAC delay distribution derived earlier as service distribution. The total MAC EDCF video (base layer) queueing delay is the sum of expected waiting time of high-priority voice frames, service residual of best-effort data and the expected waiting time of video frames at HOL queue. Next, we model video retransmission events at receiver as renewal-reward process of frame(s) identified for retransmission to establish the "spread"-time between successful renewal events. The "spread"-time is indeed the probabilistic retransmission bound that we seek for a single video frame identified for retransmission. We verify our model and analytical bounds using an in-house Multimedia Mobile Communication Platform (MMCP), written entirely in software to study the cross-layer interworking between MAC and transport for IEEE 802.11 and 802.11e MAC. MMCP currently supports MPEG4 single-layer and FGS two-layer with concurrent voice and video streaming capabilities.
机译:在本文中,我们寻求建立具有增强型MAC分布式协调功能(EDCF)的IEEE 802.11e QAP / QSTA上传输多层视频帧的重传延迟的概率边界。我们考虑使用混合FEC / ARQ错误检测和控制的端到端多层视频流。在节点数量的情况下,在IEEE 802.11e MAC EDCF的多个优先级下,我们首先建立稳态冲突概率和竞争解决延迟。我们介绍了时变瑞利慢衰落信道误差模型,并研究了其对MAC EDCF传输的影响。对于视频传输,我们使用行头(HOL)优先级排队规则(使用较早导出的MAC延迟分布作为服务分布)对EDCF MAC视频队列的预期等待时间进行建模。 MAC EDCF视频(基础层)的总排队延迟是高优先级语音帧的预期等待时间,尽力而为数据的服务残差和HOL队列中视频帧的预期等待时间的总和。接下来,我们将接收器处的视频重传事件建模为被标识为重传的帧的重发过程,以建立成功的重发事件之间的“传播”时间。实际上,“扩展”时间是我们寻找标识用于重传的单个视频帧的概率重传范围。我们使用内部完全由软件编写的多媒体移动通信平台(MMCP)来验证模型和分析范围,以研究MAC与IEEE 802.11和802.11e MAC的传输之间的跨层互通。 MMCP当前支持具有并行语音和视频流功能的MPEG4单层和FGS两层。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号