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Adaptive Error-Correction Coding Scheme for Underwater Acoustic Communication Networks

机译:水下声通信网络的自适应纠错编码方案

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摘要

Underwater acoustic communication networks (UWANs) have recently attracted much attention in the research community. Two properties that set UWANs apart from most radio-frequency wireless communication networks are the long propagation delay and the possible sparsity of the network topology. This in turn offers opportunities to optimize throughput through time and spatial reuse. In this paper, we propose a new adaptive coding method to realize the former. We consider time-slotted scheduling protocols, which are a popular solution for contention-free and interference-free access in small-scale UWANs, and exploit the surplus guard time that occurs for individual links for improving transmission reliability. In particular, using link distances as side information, transmitters utilize the available portion of the time slot to adapt their code rate and increase reliability. Since increased reliability trades off with energy consumption per transmission, we optimize the code rate for best tradeoff, considering both single and multiple packet transmission using the incremental redundancy hybrid automatic repeat request (IR–HARQ) protocol. For practical implementation of this adaptive coding scheme, we consider punctured and rateless codes. Simulation results demonstrate the gains achieved by our coding scheme over fixed-rate error-correction codes in terms of both throughput and consumption of transmitted energy per successfully delivered packet. We also report results from a sea trial conducted at the Haifa harbor, which corroborate the simulations.
机译:水下声通信网络(UWAN)最近在研究界引起了很多关注。使UWAN与大多数射频无线通信网络区分开的两个属性是传播延迟长和网络拓扑的稀疏性。反过来,这提供了通过时间和空间复用来优化吞吐量的机会。在本文中,我们提出了一种新的自适应编码方法来实现前者。我们考虑使用时隙调度协议,它们是小型UWAN中无争用和无干扰访问的流行解决方案,并利用单个链路出现的剩余保护时间来提高传输可靠性。特别地,使用链路距离作为辅助信息,发射机利用时隙的可用部分来调整其码率并提高可靠性。由于增加的可靠性要与每次传输的能耗进行权衡,因此,我们考虑到使用增量冗余混合自动重发请求(IR–HARQ)协议进行的单个和多个数据包传输,可以优化代码速率以获得最佳的权衡。对于该自适应编码方案的实际实现,我们考虑删余码和无速率码。仿真结果表明,在吞吐量和每个成功传送的数据包的传输能量消耗方面,我们的编码方案通过固定速率纠错码获得的收益。我们还报告了在海法港进行的一次海上试验的结果,证实了模拟结果。

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