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Optimal Dynamic Coding-Window Selection for Serving Deadline-Constrained Traffic Over Time-Varying Channels

机译:在时变信道上服务受时限约束的流量的最佳动态编码窗口选择

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摘要

We formulate and solve the problem of optimal channel coding and flow-rate control for serving deadline-constrained traffic with average delivery ratio requirements (typical of multimedia streaming and interactive real-time applications) over time-varying channels. To that end, we first characterize the largest set of arrival processes (rather than rates) whose deadline and delivery ratio requirements can be satisfied. Then, we propose a dynamic (channel) coding algorithm that provably satisfies the requirements of any arrival process in this region. This optimal dynamic algorithm evolves through simple iterations to utilize a combination of pricing and finite-horizon dynamic programming operations. Next, we proposed two low-complexity approximations of the algorithm that has provable performance. We also extend the setup to allow for a flow controller that adjusts the incoming flow rates to satisfy their delivery ratio constraints when the arrival process is unknown but controllable. We propose a joint dynamic coding and a rate control algorithm to solve this problem, and prove its stability under the stochastic system operation. We also apply these general results to an important wireless down-link broadcast scenario with and without random network coding capabilities. Our theoretical work is supported by extensive numerical studies, which also reveal that our dynamic coding strategy outperforms any static coding strategy by opportunistically exploiting the statistical variations in the arrival and channel processes.
机译:我们制定并解决了最佳渠道编码和流量控制问题,以在时变渠道上以平均交付率要求(多媒体流和交互式实时应用程序的典型值)为截止日期受限的流量提供服务。为此,我们首先描述最大的到达过程集(而不是费率),这些过程可以满足截止日期和交付比率的要求。然后,我们提出一种动态(信道)编码算法,该算法可证明满足该区域中任何到达过程的要求。这种最优的动态算法通过简单的迭代演变而成,以利用定价和有限水平动态编程操作的组合。接下来,我们提出了具有可证明性能的算法的两个低复杂度近似。我们还扩展了设置,以允许流量控制器在到达过程未知但可控的情况下调整进入的流量以满足其输送比率约束。我们提出了一种联合动态编码和速率控制算法来解决这个问题,并证明其在随机系统操作下的稳定性。我们还将这些一般结果应用于具有和不具有随机网络编码功能的重要无线下行链路广播场景。大量的数值研究为我们的理论工作提供了支持,这些研究还揭示了我们的动态编码策略通过机会性地利用到达和信道过程中的统计变化来胜过任何静态编码策略。

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