A Propagation-delay-tolerant Collision Avoidance Protocol for Underwater Acoustic Sensor Networks

Xiaoxing Guo, M. Frater, M. Ryan
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引用次数: 138

Abstract

Underwater acoustic sensor networks can be employed by a vast range of applications, retrieving accurate and up-to-date information from underneath the water surface. Although widely used by radios in terrestrial sensor networks, radio frequencies do not propagate well underwater. Acoustic channels are therefore employed as an alternative to support long-distance and low-power communication underwater, even though such channels suffer from long propagation delay and very limited bandwidth. In this paper, we investigate the impact of the large propagation delay on the throughput of selected classical MAC protocols and their variants, and show that protocols need to be revised to accommodate large propagation delay in order to achieve good throughput. We then introduce a propagation-delay-tolerant collision avoidance protocol named PCAP and show that by taking into account the propagation delay, PCAP offers higher throughput than the protocols that are widely used by conventional wireless communication networks.
一种用于水声传感器网络的传播-延迟容忍避碰协议
水声传感器网络可用于广泛的应用,从水面下检索准确和最新的信息。尽管无线电在地面传感器网络中广泛使用,但无线电频率在水下传播不佳。因此,声学信道被用作支持水下长距离和低功率通信的替代方案,尽管这种信道的传播延迟很长,带宽非常有限。在本文中,我们研究了大的传播延迟对选定的经典MAC协议及其变体的吞吐量的影响,并表明需要修改协议以适应大的传播延迟,以实现良好的吞吐量。然后,我们引入了一种名为PCAP的传播延迟容忍冲突避免协议,并表明通过考虑传播延迟,PCAP提供了比传统无线通信网络广泛使用的协议更高的吞吐量。
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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