Slotted FAMA: a MAC protocol for underwater acoustic networks

M. Molins, M. Stojanovic
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引用次数: 508

Abstract

Long propagation delays and low bit rates of underwater acoustic networks make these systems fundamentally different from the packet radio networks. As a consequence, many of the network protocols designed for radio channels are either not applicable, or have extremely low efficiency over underwater acoustic channels. These facts necessitate a dedicated design of protocols for an underwater acoustic network. A medium access control (MAC) protocol suitable for an underwater acoustic network is proposed and analyzed. The protocol is based on a channel access discipline called floor acquisition multiple access (FAMA) which combines both carrier sensing (CS) and a dialogue between the source and receiver prior to data transmission. During the initial dialogue, control packets are exchanged between the source node and the intended destination node to avoid multiple transmissions at the same time. Special attention is paid to the networks that are not fully connected, in which nodes can be hidden from each other. The new protocol uses time slotting and is thus called slotted FAMA. Time slotting eliminates the need for excessively long control packets, thus providing savings in energy. Protocol performance in throughput and delay is assessed through simulation of a mobile ad hoc underwater network, showing the existence of optimal power level to be used for a given user density.
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开槽FAMA:水声网络的MAC协议
水声网络的长传播延迟和低比特率使得这些系统与分组无线网络有本质的不同。因此,许多为无线电信道设计的网络协议要么不适用,要么在水声信道上效率极低。这些事实要求为水声网络设计专门的协议。提出并分析了一种适用于水声网络的介质访问控制(MAC)协议。该协议基于称为层采集多址(FAMA)的信道访问规则,该规则结合了载波传感(CS)和数据传输之前源和接收器之间的对话。在初始对话期间,控制数据包在源节点和目标节点之间交换,以避免同时进行多次传输。特别要注意的是非完全连接的网络,其中的节点可以相互隐藏。新协议使用时隙,因此被称为时隙FAMA。时隙消除了对过长的控制数据包的需求,从而节省了能量。通过对移动自组织水下网络的仿真,评估了协议在吞吐量和延迟方面的性能,表明存在给定用户密度下使用的最佳功率水平。
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