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首页> 外文期刊>IEEE Transactions on Broadcasting >Joint Scalable Coding and Routing for 60 GHz Real-Time Live HD Video Streaming Applications
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Joint Scalable Coding and Routing for 60 GHz Real-Time Live HD Video Streaming Applications

机译:用于60 GHz实时实时高清视频流应用的联合可扩展编码和路由

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摘要

Transmission of high-definition (HD) video is a promising application for 60 GHz wireless links, since very high transmission rates (up to several Gbit/s) are possible. In particular we consider a sports stadium broadcasting system where signals from multiple cameras are transmitted to a central location. Due to the high pathloss of 60 GHz radiation over the large distances encountered in this scenario, the use of relays might be required. The current paper analyzes the joint selection of the routes (relays) and the compression rates from the various sources for maximization of the overall video quality. We consider three different scenarios: (i) each source transmits only to one relay and the relay can receive only one data stream, and (ii) each source can transmit only to a single relay, but relays can aggregate streams from different sources and forward to the destination, and (iii) the source can split its data stream into parallel streams, which can be transmitted via different relays to the destination. For each scenario, we derive the mathematical formulations of the optimization problem and re-formulate them as convex mixed-integer programming, which can guarantee optimal solutions. Extensive simulations demonstrate that high-quality transmission is possible for at least ten cameras over distances of 300 m. Furthermore, optimization of the video quality gives results that can significantly outperform algorithms that maximize data rates.
机译:高清晰度(HD)视频的传输是60 GHz无线链路的一个有希望的应用,因为它可以实现非常高的传输速率(高达几Gbit / s)。特别地,我们考虑一个体育馆广播系统,其中来自多个摄像机的信号被传输到中央位置。由于在这种情况下遇到的较大距离内60 GHz辐射的路径损耗很高,因此可能需要使用继电器。本文分析了各种路径(中继)的联合选择以及来自各种来源的压缩率,以实现整体视频质量的最大化。我们考虑三种不同的情况:(i)每个源仅发送到一个中继,并且该中继只能接收一个数据流,并且(ii)每个源只能发送到一个中继,但是中继可以聚合来自不同源的流并转发(iii)源可以将其数据流拆分为并行流,并可以通过不同的中继将其传输到目标。对于每种情况,我们导出优化问题的数学公式,并将它们重新公式化为凸混合整数规划,从而可以保证最优解。大量的模拟表明,在300 m的距离上,至少有十个摄像机可以进行高质量的传输。此外,视频质量的优化所获得的结果可以大大优于最大化数据速率的算法。

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