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首页> 外文期刊>IEEE transactions on wireless communications >Minimum-Latency FEC Design With Delayed Feedback: Mathematical Modeling and Efficient Algorithms
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Minimum-Latency FEC Design With Delayed Feedback: Mathematical Modeling and Efficient Algorithms

机译:具有延迟反馈的最小延迟FEC设计:数学建模和高效算法

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摘要

In this paper, we consider the packet-level forward error correction (FEC) code design, without feedback or with delayed feedback, for achieving the minimum end-to-end latency, i.e., the latency between the time that packet is generated at the source and its in-order delivery to the application layer of the destination. We first show that the minimum-latency FEC design problem can be modeled as a partially observable Markov decision process (POMDP), and hence the optimal code construction can be obtained by solving the corresponding POMDP. However, solving the POMDP optimally is in general difficult unless its state and action space is very small. To this end, we propose an efficient heuristic algorithm, namely the majority vote policy, for obtaining a high quality approximate solution. We also derive the tight lower and upper bounds of the optimal state values of this POMDP, based on which a more sophisticated D-step search algorithm can be implemented for obtaining near-optimal solutions. The simulation results show that the proposed code designs via solving the POMDP, either with the majority vote policy or the D-step search algorithm, strictly outperform the existing schemes, for both cases, without or with only delayed feedback.
机译:在本文中,我们考虑数据包级前向纠错(FEC)代码设计,而无需反馈或具有延迟反馈,用于实现最小端到端延迟,即,在生成数据包的时间之间的延迟源及其有序交付到目的地的应用层。首先表明最小延迟FEC设计问题可以被建模为部分观察到的马尔可夫决策过程(POMDP),因此通过求解相应的POMDP可以获得最佳码结构。然而,除非其状态和动作空间非常小,否则最佳地解决POMDP一般困难。为此,我们提出了一种高效的启发式算法,即大多数投票策略,用于获得高质量的近似解。我们还得出了该POMDP的最佳状态值的紧密下限和上限,基于该POMDP的最佳状态值,可以实现更复杂的D-Step搜索算法以获得近最佳解决方案。仿真结果表明,所提出的代码通过求解POMDP,既有大多数投票策略或D-Step搜索算法,都严格越优于现有方案,两种情况,没有或仅延迟反馈。

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