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Cross-layer content/channel aware multi-user scheduling for downlink wireless video streaming

机译:用于下行链路无线视频流的跨层内容/通道感知多用户调度

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A new cross-layer content/channel-aware downlink scheduling algorithm for wireless video streaming is presented. A novel mathematical model has been developed for the performance analysis of the proposed scheduling algorithm. Using novel content-aware and standard performance metrics, the performance of the scheduling algorithm is evaluated and optimized. The results show that there is an inherent conflict between content-awareness for enhanced video quality and channel-awareness for high channel capacity. The scheduling algorithm can be tuned to maximize the throughput of the most significant video packets, while minimizing the capacity penalty due to quality/capacity trade-off. The results also suggest that the level of content-awareness required for optimum performance at the scheduler and the achieved capacity, are highly sensitive to the delay constraint. The lower the delay constraint, the higher the importance of content-awareness and the lower the capacity. Under the parameters of the investigation in this paper, the results show that the capacity is 3.7 times more for a delay constraint of 10ms than for a zero delay constraint.
机译:提出了一种新的用于无线视频流的跨层内容/信道感知下行链路调度算法。为提出的调度算法的性能分析,开发了一种新颖的数学模型。使用新颖的内容感知和标准性能指标,可以评估和优化调度算法的性能。结果表明,在提高视频质量的内容意识与提高通道容量的通道意识之间存在固有的冲突。可以对调度算法进行调整,以最大程度地提高最重要视频数据包的吞吐量,同时将由于质量/容量折衷而导致的容量损失最小化。结果还表明,调度程序的最佳性能和已实现的容量所需的内容感知级别对延迟约束高度敏感。延迟约束越低,内容感知的重要性就越高,容量也就越低。在本文研究的参数下,结果表明,对于10ms的延迟约束,容量是零延迟约束的3.7倍。

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