一种基于TDMA的水下传感器网络电磁控制多通道MAC协议

Md. Ibrahim Ibne Alam, Md. Farhad Hossain
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引用次数: 4

摘要

成功的水下高吞吐量无线通信在今天仍然面临着巨大的挑战。由于水下环境的特殊性,地面网络的介质接入协议(MAC)并不适合这种环境。水中电磁波的高衰减特性使声波成为水下通信更合适的选择。然而,低可用带宽、高传播时延和节点的时空不确定性使得声道MAC协议成为一个广阔的研究领域。本文提出了一种基于声波和电磁波的水下传感器网络(UWSNs)多通道MAC协议。提出的MAC协议具有单一的基于EM的控制通道,用于管理节点数据传输时间和确认消息。另一方面,采用多个声学通道作为数据通信通道。在该协议中,控制信道采用时分多址(TDMA)技术,避免了节点控制信号之间的冲突。由于控制信道的零碰撞特性,使得整个MAC方案保持无碰撞状态。为了评估所提出的MAC协议的性能,进行了大量的仿真,证明了其有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A TDMA based EM controlled multi-channel MAC protocol for underwater sensor networks
Successful wireless communications in underwater with high throughput possess a great challenge still today. Due to the unique environment in underwater, medium access protocols (MAC) for terrestrial networks are not suitable for such environment. High attenuation of electromagnetic (EM) wave in water makes acoustic wave a more appropriate choice for communication in underwater. However, the low available bandwidth, high propagation delays and spatial-temporal uncertainty of the nodes make the MAC protocols with acoustic channel a vast area for research. In this paper, we propose a novel multi-channel MAC protocol for underwater sensor networks (UWSNs) employing both acoustic and EM waves. The proposed MAC protocol has a single EM based control channel which is used for managing the node data transmission times and confirmation messages. On the other hand, multiple acoustic channels are used as the data communication channels. In the proposed protocol, time division multiple access (TDMA) technique is used for control channel to prevent any collision between control signals of the nodes. Because of the nature of zero collision in the control channel, the whole MAC scheme remains in a collision-less state. Extensive simulations are carried out for evaluating the performance of the proposed MAC protocol demonstrating its validity.
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