DocumentCode
3079880
Title
Resource-constrained signal propagation modeling for tactical mobile ad hoc networks
Author
Reidt, Steffen ; Ebinger, Peter ; Kuijper, Arjan ; Wolthusen, Stephen D.
Author_Institution
Dept. of Math., R. Holloway, Univ. of London, London, UK
fYear
2011
fDate
22-24 June 2011
Firstpage
67
Lastpage
74
Abstract
Connectivity and security of tactical mobile ad hoc networks (MANETs) can be enhanced signiminimizationficantly by explicit consideration of radio propagation as this not only allows determination of route feasibility and minimization of radio frequency power, but also avoids detectability of emanations. Tactical MANETs (and increasingly general MANETs) typically have geolocation and terrain information available, however as they are likely to be deployed in urban, broken, or indoor environments, simple Free Space or Two-Ray Ground models are not adequate. Although highly accurate radio propagation models exist, they require considerable computational resources and are hence unsuitable for incorporation into real-time protocols, particularly on resource-constrained platforms such as MANET nodes. We therefore propose a simplified, scalable ray-optical radio frequency propagation model that incorporates a Two-Ray Ground model and takes reflections and deflections on terrain features into account. Although our proposed model does not incorporate a comprehensive model of all physical effects, we argue that the approximation provided by our model is sufficient and suitable for the purposes of enhancing network performance and accuracy in the frequency range currently used by wireless networks. The model was incorporated in the NS-2 simulator and validated both using simulation and experimentally.
Keywords
light propagation; military communication; mobile ad hoc networks; protocols; radiowave propagation; MANET; NS-2 simulator; free space models; radiofrequency power minimization; real-time protocols; resource-constrained signal propagation modeling; scalable ray-optical radiofrequency propagation model; tactical mobile ad hoc networks; two-ray ground models; wireless networks; Ad hoc networks; Atmospheric modeling; Computational modeling; Mathematical model; Mobile computing; Routing protocols; Solid modeling;
fLanguage
English
Publisher
ieee
Conference_Titel
Network Science Workshop (NSW), 2011 IEEE
Conference_Location
West Point, NY
Print_ISBN
978-1-4577-1049-0
Type
conf
DOI
10.1109/NSW.2011.6004660
Filename
6004660
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