Title :
Underwater Acoustic Communications and Networks for the US Navy´s Seaweb Program
Author :
Rice, Joe ; Green, Dale
Author_Institution :
Phys. Dept., Naval Postgrad. Sch., Monterey, CA
Abstract :
At present, the realities of acoustic communications and undersea networks differ substantially from the expectations arising from academic theory and investigation. The issue is not that the fundamentals of communications theory do not apply, but rather the fact that the difficulties of the acoustic channel do not necessarily fit the assumptions underlying conventional applications of that theory. In this paper we describe many of the practical problems that have been addressed over the past ten years of modem development. Some of the issues addressed have an RF analog, but the severity of the channel and the combination of channel constraints and modem-platform operations makes acoustic communications a very different problem. In particular, we address these issues via their impact on physically small, battery powered, DSP-based, omni-directional modems. Next we describe progress toward using commercial acoustic modems as the basis for underwater networks. We discuss design choices at the physical, link, and network layers that are consistent with the compound constraints of the transmission channel and modem.
Keywords :
modems; telecommunication channels; underwater acoustic communication; DSP-based methods; US navy seaweb program; academic theory; acoustic channel; battery powered methods; channel constraints; omnidirectional modems; transmission channel; underwater acoustic communications; Acoustic applications; Acoustic sensors; Laboratories; Modems; Navigation; Permission; Physics; Underwater acoustics; Underwater communication; Velocity measurement; acoustics; communications; networks; signal processing;
Conference_Titel :
Sensor Technologies and Applications, 2008. SENSORCOMM '08. Second International Conference on
Conference_Location :
Cap Esterel
Print_ISBN :
978-0-7695-3330-8
Electronic_ISBN :
978-0-7695-3330-8
DOI :
10.1109/SENSORCOMM.2008.137