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Delay Optimal Buffered Decode-and-Forward for Two-Hop Networks With Random Link Connectivity

机译:具有随机链路连接的两跳网络的延迟最优缓冲解码转发

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Delay optimal control of multi-hop networks remains a challenging problem even in the simplest scenarios. In this paper, we consider delay optimal control of a two-hop half-duplex network with independent identically distributed ON-OFF fading. Both the source node and the relay node are equipped with infinite buffers and have exogenous bit arrivals. We focus on delay optimal link selection to minimize the average sum queue length over a finite horizon subject to a half-duplex constraint. To solve the problem, we introduce a new approach, whereby an actual discrete time system (ADTS) is approximated using a virtual continuous time system (VCTS). We obtain an asymptotically delay optimal policy in the VCTS. Using the relationship between the VCTS and the ADTS, we obtain an asymptotically delay optimal policy in the ADTS. The obtained policy has both a priority feature and a safety stock feature. It offers good design insights for wireless relay networks. In addition, the obtained policy has a closed-form expression, does not require knowledge of arrival statistics, and can be implemented online. Finally, using renewal theory and the theory of random walks, we analyze the average delay resulting from the asymptotically delay optimal policy.
机译:即使在最简单的情况下,多跳网络的延迟最优控制仍然是一个具有挑战性的问题。在本文中,我们考虑具有独立的相同分布的ON-OFF衰落的两跳半双工网络的延迟最优控制。源节点和中继节点都配备有无限的缓冲区,并且具有外部位到达。我们专注于延迟最佳链路选择,以使受半双工约束的有限范围内的平均和队列长度最小化。为了解决该问题,我们引入了一种新方法,即使用虚拟连续时间系统(VCTS)逼近实际离散时间系统(ADTS)。我们在VCTS中获得了一个渐近延迟最优策略。利用VCTS和ADTS之间的关系,我们获得了ADTS中的渐近延迟最优策略。获得的策略同时具有优先级功能和安全库存功能。它为无线中继网络提供了很好的设计见解。另外,所获得的策略具有封闭形式的表达式,不需要到达统计信息,并且可以在线实施。最后,利用更新理论和随机游走理论,分析了渐近时滞最优策略的平均时延。

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