IEEE 802.11ad中继高清视频编码速率和单播流控制联合优化

Joongheon Kim, Yafei Tian, A. Molisch, S. Mangold
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引用次数: 21

摘要

针对60ghz毫米波(mmWave) IEEE 802.11ad超高吞吐量(VHT)无线系统,提出了一种最小化高清(HD)视频编码速率和选择最佳中继节点的联合优化框架。虽然IEEE 802.11ad VHT旨在支持未压缩的高清视频无线传输,但其主要限制是即使在视距情况下也具有极高的衰减,这导致发射器和接收器之间的可接受距离很短,并且/或必须压缩视频。为了解决这个问题,IEEE 802.11ad VHT标准草案定义了有效的中继协议来扩展网络覆盖。当存在多个源-目的对和多个中继时,一个关键问题是哪个中继应该帮助转发哪个源流。这种选择应该以这样一种方式进行,即流的平均视频质量(与吞吐量以非线性方式相关)最大化。我们通过一个整数规划框架来解决这个问题,该框架选择最优中继节点,它们的合作模式(即放大转发,解码转发或不合作)以及可以最大限度地提高传输质量的视频编码(压缩)率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Joint optimization of HD video coding rates and unicast flow control for IEEE 802.11ad relaying
This paper proposes a joint optimization framework for minimizing high-definition (HD) video coding rates and selecting optimal relay nodes in 60 GHz millimeter-wave (mmWave) IEEE 802.11ad very high throughput (VHT) wireless systems. While IEEE 802.11ad VHT aims to support uncompressed HD video wireless transmission, its major limitation is the extremely high attenuation even in line-of-sight situations, which leads to a short admissible distance between transmitter and receivers and/or the necessity to compress video. To deal with this problem, the IEEE 802.11ad VHT draft standard defines efficient relaying protocols to extend the network coverage. When multiple source-destination pairs and multiple relays are present, a key question is which relay should help in the forwarding of which source flow. This selection should be done in such a way that the average video quality of the streams, which is related to the throughput in a nonlinear way, is maximized. We solve this problem by an integer programming framework that selects optimal relay nodes, their cooperation modes (i.e., amplify-and-forward, decode-and-forward, or non-cooperation), and the video coding (compression) rates which can maximize transmission quality.
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