DocumentCode
1941343
Title
Modeling TDMA-based USAP in JTRS MDL for multicast and unicast traffic
Author
Perumal, Senni ; Tabatabaee, Vahid ; Baras, John S. ; Graff, Charles J. ; Yee, David G.
Author_Institution
AIMS Inc., Rockville, MD, USA
fYear
2010
fDate
Oct. 31 2010-Nov. 3 2010
Firstpage
1924
Lastpage
1929
Abstract
In this paper, we develop loss network models for the hard scheduling mode (virtual circuit mode) of the reservation-based USAP scheduling protocol as used in the Mobile Data Link (MDL) of the Joint Tactical Radio System (JTRS). These models are used to find performance metric estimates for both multicast and unicast traffic. USAP (Unifying Slot Assignment Protocol) is a dynamic distributed resource allocation protocol for mobile multihop wireless networks where the channel is partitioned in time and frequency. MDL creates a backbone sub-network and routes all traffic through this sub-network. For the backbone sub-network, we consider algorithms that form Connected Dominating Sets. We use loss network models that couple the physical, MAC, and routing layers effects. The effect of the MAC layer is modeled by approximating available capacity at a node. The available capacity to transmit is computed based on the USAP reservation rules and the node´s 2-hop neighborhood traffic. For a given time varying scenario, we compute the performance metrics of blocking probability and throughput for both multicast and unicast traffic as a function of time. We compare the results of our model against simulation.
Keywords
military communication; mobile communication; multicast communication; resource allocation; routing protocols; time division multiple access; JTRS MDL; Joint Tactical Radio System; MAC; Mobile Data Link; TDMA-based USAP modeling; Unifying Slot Assignment Protocol; connected dominating sets; dynamic distributed resource allocation protocol; hard scheduling mode; loss network models; mobile multihop wireless networks; multicast traffic; reservation-based USAP scheduling protocol; routing layers effects; unicast traffic; virtual circuit mode; Arteries; Computational modeling; Integrated circuit modeling; Load modeling; Scheduling; Time frequency analysis; Unicast;
fLanguage
English
Publisher
ieee
Conference_Titel
MILITARY COMMUNICATIONS CONFERENCE, 2010 - MILCOM 2010
Conference_Location
San Jose, CA
ISSN
2155-7578
Print_ISBN
978-1-4244-8178-1
Type
conf
DOI
10.1109/MILCOM.2010.5680409
Filename
5680409
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