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ARQ-Aware Scheduling and Link Adaptation for Video Transmission over Mobile Broadband Networks

机译:通过移动宽带网络进行视频传输的ARQ感知调度和链路自适应

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摘要

This paper studies the effect of ARQ retransmissions on packet error rate, delay, and jitter at the application layer for a realtime video transmission at 1.03 Mbps over a mobile broadband network. The effect of time-correlated channel errors for various Mobile Station (MS) velocities is evaluated. In the context of mobile WiMAX, the role of the ARQ Retry Timeout parameter and the maximum number of ARQ retransmissions is taken into account. ARQ-aware and channel-aware scheduling is assumed in order to allocate adequate resources according to the level of packet error rate and the number of ARQ retransmissions required. A novel metric, namely, goodput per frame, is proposed as a measure of transmission efficiency. Results show that to attain quasi error free transmission and low jitter (for real-time video QoS), only QPSK 1/2 can be used at mean channel SNR values between 12 dB and 16 dB, while 16QAM 1/2 can be used below 20 dB at walking speeds. However, these modes are shown to result in low transmission efficiency, attaining, for example, a total goodput of 3 Mbps at an SNR of 14 dB, for a block lifetime of 90 ms. It is shown that ARQ retransmissions are more effective at higher MS speeds.
机译:本文研究了在移动宽带网络上以1.03 Mbps进行实时视频传输时,ARQ重传对应用层的数据包错误率,延迟和抖动的影响。评估了各种移动台(MS)速度与时间相关的信道错误的影响。在移动WiMAX的上下文中,考虑了ARQ重试超时参数的作用和最大ARQ重传次数。为了根据分组错误率的级别和所需的ARQ重传的次数来分配足够的资源,假定了ARQ感知和信道感知调度。提出了一种新颖的度量,即每帧吞吐量,作为传输效率的度量。结果表明,要实现准无误传输和低抖动(用于实时视频QoS),在12 dB至16 dB的平均信道SNR值下只能使用QPSK 1/2,而在以下情况下可以使用16QAM 1/2步行速度为20 dB。但是,这些模式显示出较低的传输效率,例如,对于90 ms的块寿命,在SNR为14 dB时,总吞吐量达到3 Mbps。结果表明,ARQ重传在更高的MS速度下更为有效。

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  • 来源
    《Journal of computer networks and communications》 |2012年第1期|369803.1-369803.13|共13页
  • 作者单位

    Department of Electrical and Electronic Engineering, University of Bristol, Bristol BS8 1UB, UK,Department of Aircraft Technology, Technological Educational Institute (ATEI) of Chalkis, Psachna, 34400 Evia, Greece;

    Department of Electrical and Electronic Engineering, University of Bristol, Bristol BS8 1UB, UK;

    Department of Electrical and Electronic Engineering, University of Bristol, Bristol BS8 1UB, UK;

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