Graph Colouring MAC Protocol for Underwater Sensor Networks

Faisal Alfouzan, A. Shahrabi, S. Ghoreyshi, T. Boutaleb
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引用次数: 13

Abstract

Employing contention-based MAC protocols in underwater sensor networks are typically costly. This is mainly due to the unique characteristics of its acoustic channels such as long propagation delay, high bit error rate, and limited bandwidth. As a consequence, handshake-based and random access-based MAC protocols do not perform as well as expected. The collision-free approach is therefore considered to achieve a better performance by efficiently addressing spatial-temporal uncertainty, hidden/exposed terminal problems, and near-far effect at MAC layer, thus collisions and retransmissions are properly avoided in order to reduce the energy cost and also to improve the throughput and fairness across the network. In this paper, we propose a novel energy-conserving and collision-free graph colouring MAC protocol, called GC-MAC, for UWSNs. It employs a TDMA-like principle by assigning separate time slots to every individual colour in the network. Nodes with the same colours can thus transmit concurrently without any collision. GC-MAC also does not require CDMA or power adjustment for collision resolution. Our extensive simulation study reveals that our proposed protocol can efficiently handle the traffic contention to achieve significant improvement in terms of throughput, energy consumption, and fairness index under varying offered loads.
水下传感器网络的图形着色MAC协议
在水下传感器网络中采用基于争用的MAC协议通常成本很高。这主要是由于其声学信道的独特特性,如长传播延迟、高误码率和有限的带宽。因此,基于握手和基于随机访问的MAC协议的性能不如预期。因此,无冲突方法可以有效地解决时空不确定性、终端隐藏/暴露问题和MAC层的远近效应,从而获得更好的性能,从而适当地避免冲突和重传,从而降低能量成本,提高整个网络的吞吐量和公平性。在本文中,我们提出了一种新的节能且无冲突的UWSNs图着色MAC协议,称为GC-MAC。它采用类似tdma的原理,为网络中的每种颜色分配单独的时隙。因此,具有相同颜色的节点可以同时传输而不会发生任何冲突。GC-MAC也不需要CDMA或功率调整碰撞分辨率。大量的仿真研究表明,我们提出的协议可以有效地处理流量争用,在不同负载条件下,在吞吐量、能耗和公平性指标方面都有显著提高。
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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