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Delivery Delay Analysis of Selective Repeat ARQ in Underwater Acoustic Communications

机译:水下声通信中选择性重复ARQ的传递延迟分析

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Despite being the most efficient automatic repeat request (ARQ) protocol, the selective-repeat ARQ (SR-ARQ) is previously thought to be infeasible in underwater acoustic communications owing to the half-duplex property of typical underwater acoustic modems. However, with the help of the juggling-like stop-and-wait (JSW) transmission scheme, it has now become feasible. In this paper, we evaluate the delivery delay (consisting of transmission and resequencing delays) of the SR-ARQ operating over the JSW scheme under the static assumption that the relative radial velocity between the transmitter and the receiver is zero, aiming to provide system designers with a valuable reference for delay evaluation under more general scenarios. We model the underwater acoustic channel as a two-state Discrete Time Markov Channel, and derive the closed-form expression for the delivery delay under heavy traffic situation. Unlike most analytical approaches for the delay analysis of SR-ARQ in terrestrial communications whose computational complexities grow exponentially with round-trip delay, our proposed analytical approach is immune to the round-trip delay. This also makes our approach suitable for terrestrial communications. To highlight the accuracy of our approach, we also provide comparisons between analytical and simulation results.
机译:尽管是最有效的自动重复请求(ARQ)协议,但由于典型的水下声波调制解调器的半双工特性,选择性重复ARQ(SR-ARQ)先前被认为在水下声波通信中不可行。但是,借助类似杂耍的停止等待(JSW)传输方案,它现在变得可行。在本文中,我们在静态假设发射器和接收器之间的相对径向速度为零的情况下,评估了在JSW方案下运行的SR-ARQ的传递延迟(由传输延迟和重新排序延迟组成),旨在为系统设计人员提供帮助在更一般的情况下为延迟评估提供了有价值的参考。我们将水下声学通道建模为两个状态的离散时间马尔可夫通道,并针对交通繁忙情况下的传递延迟推导了封闭形式。与大多数用于地面通信中SR-ARQ延迟分析的分析方法不同,其计算复杂度随往返延迟成指数增长,我们提出的分析方法不受往返延迟的影响。这也使我们的方法适用于地面通信。为了突出我们方法的准确性,我们还提供了分析结果和模拟结果之间的比较。

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