A novel MAC protocol for underwater acoustic, sensor networks

Mingsheng Gao, Guangzhong Liu, Q. Ma
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引用次数: 1

Abstract

Constrained by the interior properties of underwater acoustic channels such as limited bandwidth, time-varying multipath propagation, and large propagation delay, the design of multiple access (MAC) protocols for underwater acoustic sensor networks (UWSN) poses significant challenges. Existing MAC protocols for UWSNs exhibit very low performance in channel utilization, throughput and end-to-end delay, as well as energy consumption since 1) they are based on the conventional stop-and-wait (SW) transmission scheme, and 2) fewer has error-control mechanism at the data link layer. In this paper, we assume the UWSN has a multi-hop flat topology, where there exist a sink node and some other common sensor nodes; all the nodes adopt Time Division Multiple Access (TDMA) to access channel. First, we classify all the nodes into different groups according to the numbers of hops between these nodes themselves and the sink node; the nodes belonging to different groups adopt TDMA frames with different starting time. We then propose a new MAC protocol by incorporating the multi-channel technique and the juggling-like stop-and-wait (JSW) transmission scheme (which was tailored for underwater acoustic communications), which is called the JB-MAC. Finally, simulation results are presented to highlight its good performance in terms of channel utilization, throughput and delay.
一种新的水声传感器网络MAC协议
受水声信道带宽有限、时变多径传播、传播时延大等内部特性的制约,水声传感器网络(UWSN)的多址(MAC)协议设计面临重大挑战。现有的用于uwsn的MAC协议在信道利用率、吞吐量、端到端延迟以及能耗方面表现出很低的性能,因为1)它们基于传统的停止等待(SW)传输方案,2)较少在数据链路层具有错误控制机制。在本文中,我们假设UWSN具有多跳平面拓扑结构,其中存在一个汇聚节点和一些其他公共传感器节点;所有节点均采用时分多址(TDMA)方式接入信道。首先,我们根据节点本身与汇聚节点之间的跳数将所有节点划分为不同的组;属于不同组的节点采用不同起始时间的TDMA帧。然后,我们提出了一种新的MAC协议,该协议结合了多通道技术和类似于杂耍的停止等待(JSW)传输方案(为水声通信量身定制),称为JB-MAC。最后给出了仿真结果,验证了该算法在信道利用率、吞吐量和时延方面的良好性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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