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首页> 外文期刊>Oceanic Engineering, IEEE Journal of >Hybrid Collision-Free Medium Access (HCFMA) Protocol for Underwater Acoustic Networks: Design and Performance Evaluation
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Hybrid Collision-Free Medium Access (HCFMA) Protocol for Underwater Acoustic Networks: Design and Performance Evaluation

机译:水下声学网络的混合无冲突媒体访问(HCFMA)协议:设计和性能评估

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摘要

Underwater acoustic channels are typically characterized by long propagation delay, time-varying multipath, as well as very limited bandwidth, thus making it very challenging to develop efficient underwater medium access control (MAC) protocols. In this paper, we propose a new MAC protocol for underwater acoustic networks (UANs), called the hybrid collision-free medium access (HCFMA) scheme. The operation of the HCFMA scheme is based on the combination of the multichannel technique, the channel reservation mechanism, and the juggling-like stop-and-wait (JSW) transmission scheme. With the multichannel technique, the exchange of control signaling and data transmission can be separated, consequently, increasing the throughput of the network. The channel reservation mechanism which is carried out by the temporarily chosen control nodes guarantees no collision in data transmission. This is different from those whose channel reservations rely on a dedicated central controller. The JSW scheme provides an error-control mechanism during data transmission. Together, these approaches greatly improve the performance of UAN in throughput and delay. This paper describes the operation of the HCFMA scheme and analyzes its performance. We further conduct simulation to validate our analytical results. Our results show encouraging throughput and delay performance compared with other popular solutions, especially under heavy load conditions.
机译:水下声信道的典型特征是传播延迟长,时变多径以及非常有限的带宽,因此开发高效的水下介质访问控制(MAC)协议非常困难。在本文中,我们提出了一种用于水下声学网络(UAN)的新MAC协议,称为混合无冲突媒体访问(HCFMA)方案。 HCFMA方案的操作是基于多通道技术,通道保留机制和类似杂耍的停止等待(JSW)传输方案的组合。使用多通道技术,可以分离控制信令的交换和数据传输,因此,增加了网络的吞吐量。由临时选择的控制节点执行的信道保留机制可确保在数据传输中不会发生冲突。这与那些信道保留依赖于专用中央控制器的信道不同。 JSW方案在数据传输期间提供了一种错误控制机制。这些方法一起可以极大地提高UAN在吞吐量和延迟方面的性能。本文介绍了HCFMA方案的操作并分析了其性能。我们进一步进行仿真以验证我们的分析结果。与其他流行的解决方案相比,我们的结果显示出令人鼓舞的吞吐量和延迟性能,尤其是在重负载条件下。

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