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On file-based content distribution over wireless networks via multiple paths: Coding and delay trade-off

机译:通过多条路径在无线网络上进行基于文件的内容分发:编码和延迟权衡

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摘要

With the emergence of the adaptive bit rate (ABR) streaming technology, the video/content streaming technology is shifting toward a file-based content distribution. That is, video content is encoded into a set of smaller media files containing video of 2-10 seconds before transmission. This file-based content distribution, coupled with increasingly rapid adoption of smartphones, requires an efficient file-based distribution algorithm to satisfy the QoS demand in wireless networks. In this paper, we study the transmission of a finite-sized file over wireless networks using multipath routing, with the objective to minimize file transmission delay instead of average packet delay. The file transmission delay is defined as the time interval from the instant that a file is first transmitted to the time at which the file can be reconstructed in the destination node. We observe that file transmission delay depends not only on the mean of the packet delay but also on its distribution, especially the tail. This observation leads to a better understanding of the file transfer delay in wireless networks and a minimum delay file transmission strategy. In a wireless multipath communication scenario, we propose to use packet level erasure code (e.g., digital fountain code) to transmit data file with redundancy. Given that a file with k packets is encoded into n packets for transmission, the use of digital fountain code allows the file to be received when only k out of n packets are received. By adding redundant packets, the destination node does not have to wait for the packet to arrive late, hence reducing the delay of the file transmission. We characterize the tradeoff between the code rate (i.e., the ratio of the number of transmitted packets to the number of the original packets) and the file delay reduction. As a rule of thumb, we provide practical guidelines in determining an appropriate code rate for a fixed file to achieve a reasonable transmission delay. We show that only- - a few redundant packets are needed to achieve a significant reduction in file transmission delay.
机译:随着自适应比特率(ABR)流技术的出现,视频/内容流技术正在转向基于文件的内容分发。也就是说,视频内容被编码为一组较小的媒体文件,其中包含传输前2-10秒的视频。这种基于文件的内容分发,再加上越来越多的智能手机迅速采用,需要一种有效的基于文件的分发算法来满足无线网络中的QoS要求。在本文中,我们研究了使用多路径路由在无线网络上传输有限大小的文件的目的,旨在最大程度地减少文件传输延迟而不是平均数据包延迟。文件传输延迟定义为从首次传输文件到目标节点中可以重建文件的时间之间的时间间隔。我们观察到文件传输延迟不仅取决于数据包延迟的平均值,还取决于其分布,尤其是尾部。此观察结果可以使您更好地了解无线网络中的文件传输延迟和最小延迟文件传输策略。在无线多径通信情形中,我们建议使用分组级擦除码(例如,数字喷泉码)来冗余地传输数据文件。假定将具有k个数据包的文件编码为n个数据包进行传输,则当仅接收n个数据包中的k个时,使用数字喷泉代码可以接收该文件。通过添加冗余数据包,目的节点不必等待数据包延迟到达,从而减少了文件传输的延迟。我们在码率(即传输的数据包数量与原始数据包数量之比)与文件延迟减少之间权衡取舍。根据经验,我们为确定固定文件的适当编码率以实现合理的传输延迟提供了实用指南。我们显示仅需要一些冗余数据包即可显着减少文件传输延迟。

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