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Cross-layer analysis via Markov models of incremental redundancy hybrid ARQ over underwater acoustic channels

机译:通过Markov模型在水下声通道上进行增量冗余混合ARQ的跨层分析

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Underwater acoustic networks make it possible to wirelessly convey information, e.g., coming from measurements and sensing applications from under water to the surface. However, underwater communications are characterized by long delays, small available bandwidths and high error rates. These aspects may significantly affect the design of a reliable data-link layer for such systems. In this paper, we assess the performance of hybrid automatic repeat request error control schemes and we evaluate their application to improve the reliability of time-varying underwater acoustic links. We employ a parametric Markov model, which has been trained over channel traces collected during at-sea experiments. The results, based on both experimental data and analysis, suggest that parametric probabilistic representations, such as the considered Markov model, are good candidates for describing the correlated underwater acoustic channel dynamics, and may be employed to achieve a realistic evaluation of the data-link layer performance for underwater acoustic scenarios. Analytical and simulation results confirm that incremental redundancy improves the throughput of underwater acoustic links, even when real channel conditions, such as those encountered in the considered experiments, have wide dynamics over time. Finally, this kind of evaluations, beyond the data-link design, can also be employed at the network level for routing and network deployment considerations. (C) 2014 Elsevier B.V. All rights reserved.
机译:水下声网络使得可以将例如来自测量和传感应用的信息从水下无线传输到水面。但是,水下通信的特点是延迟长,可用带宽小和错误率高。这些方面可能会严重影响此类系统的可靠数据链路层的设计。在本文中,我们评估了混合自动重复请求错误控制方案的性能,并评估了它们在提高时变水下声链路可靠性方面的应用。我们采用参数马尔可夫模型,该模型已经过海上实验中收集的通道迹训练。基于实验数据和分析的结果表明,参数概率表示(例如考虑的马尔可夫模型)是描述相关水下声通道动力学的良好候选者,可用于对数据链路进行实际评估水下声学场景的层性能。分析和仿真结果证实,即使实际信道条件(如在所考虑的实验中遇到的条件)随时间变化较大,增量冗余也会提高水下声链路的吞吐量。最后,除了数据链路设计之外,这种评估还可以在网络级别用于路由和网络部署注意事项。 (C)2014 Elsevier B.V.保留所有权利。

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