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首页> 外文期刊>Oceanic Engineering, IEEE Journal of >Reliable Point-to-Point Underwater Acoustic Data Transfer: To Juggle or Not to Juggle?
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Reliable Point-to-Point Underwater Acoustic Data Transfer: To Juggle or Not to Juggle?

机译:可靠的点对点水下声学数据传输:玩杂耍还是不玩杂耍?

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摘要

Reliable data transfer speeds using underwater acoustic communication systems are limited by long propagation delays, small link data rates, and high bit error rates. We consider the practical problem of transferring a data file or data stream reliably from one half-duplex underwater node to another. In a typical automatic repeat request (ARQ) approach, a node transmits one or more packets and waits for the corresponding acknowledgments (ACKs). With long propagation delay, the long waiting time for ACKs results in low average throughput. The long propagation delay, however, presents an opportunity for two nodes to simultaneously transmit data and ACKs toward each other in a juggling-like approach, potentially reducing the average waiting time for ACKs. The approach needs to satisfy certain timing constraints, and its performance is largely dependent on the network settings and chosen parameters. Through analytical and numerical studies, we provide key insights into appropriate choice of ARQ strategies and protocol parameters under different internodal propagation delays. We show that the juggling-like ARQ (J–ARQ) provides good data streaming throughput but performs poorly for small file transfers. We propose a novel rate-less code-based J–ARQ protocol that overcomes this limitation and offers high data transfer speeds for small files in long propagation delay environments.
机译:使用水下声学通信系统的可靠数据传输速度受到传播延迟长,链路数据速率小和误码率高的限制。我们考虑将数据文件或数据流可靠地从一个半双工水下节点传输到另一个半节点的实际问题。在典型的自动重发请求(ARQ)方法中,节点发送一个或多个数据包并等待相应的确认(ACK)。由于传播延迟长,ACK的等待时间长,导致平均吞吐量低。但是,较长的传播延迟为两个节点提供了一种以类似玩杂耍的方式同时向彼此发送数据和ACK的机会,从而有可能减少ACK的平均等待时间。该方法需要满足某些时序约束,其性能很大程度上取决于网络设置和所选参数。通过分析和数值研究,我们提供了在不同节点间传播延迟下适当选择ARQ策略和协议参数的关键见解。我们显示,类似杂耍的ARQ(J–ARQ)提供了良好的数据流吞吐量,但是对于小文件传输却表现不佳。我们提出了一种新颖的基于无速率的基于代码的J–ARQ协议,该协议克服了这一限制,并在长传播延迟环境中为小型文件提供了较高的数据传输速度。

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