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The Virtue of Patience in Low-Complexity Scheduling of Packetized Media With Feedback

机译:带反馈的打包媒体低复杂度调度中的耐心美德

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We consider streaming pre-encoded and packetized media over best-effort networks in the presence of acknowledgment feedbacks. We first review a rate-distortion (RD) optimization framework that can be employed in such scenarios. As part of the framework, a scheduling algorithm selects the data to send over the network at any given time, so as to minimize the end-to-end distortion, given an estimate of channel resources and a history of previous transmissions and received acknowledgements. In practice, a greedy scheduling strategy is often considered to limit the solution search space, and reduce the computational complexity associated to the RD optimization framework. Our work observes that popular greedy schedulers are strongly penalized by early retransmissions. Therefore, we propose a scheduling algorithm that avoids premature retransmissions, while preserving the low computational complexity aspect of the greedy paradigm. Such a scheduling strategy maintains close to optimal RD performance when adapting to network bandwidth fluctuations. Our experimental results demonstrate that the proposed patient greedy scheduler provides a reduction of up to 50% in transmission rate relative to conventional greedy approaches, and that it brings up to 2 dB of quality improvement in scheduling classical MPEG-based packet video streams
机译:我们考虑在存在确认反馈的情况下,通过尽力而为网络流式传输经过预编码和打包的媒体。我们首先回顾一下可以在这种情况下使用的速率失真(RD)优化框架。作为该框架的一部分,调度算法会选择要在任何给定时间通过网络发送的数据,以便在给定信道资源以及先前传输和接收确认的历史记录的前提下,将端到端失真降至最低。在实践中,通常考虑采用贪婪的调度策略来限制求解搜索空间,并降低与RD优化框架相关的计算复杂性。我们的工作发现,流行的贪婪调度程序会因早期重新传输而受到严重惩罚。因此,我们提出了一种调度算法,该算法避免了过早的重传,同时保留了贪婪范式的低计算复杂性。当适应网络带宽波动时,这种调度策略可保持接近最佳的RD性能。我们的实验结果表明,与传统的贪婪方法相比,建议的患者贪婪调度器可将传输率降低多达50%,并且在调度基于MPEG的经典分组视频流时,其质量提高了2 dB

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