DocumentCode
2021227
Title
Impact of directional transmission in large-scale multi-hop wireless ad hoc networks
Author
Chau, Chi-Kin ; Gibbens, Richard J. ; Towsley, Don
fYear
2012
fDate
25-30 March 2012
Firstpage
522
Lastpage
530
Abstract
In multi-hop wireless networks, per-hop forwarding strategies that optimize local transmissions can have a subtle impact on network performance. Motivated by a number of scenarios for improving signal strength or mitigating interference, we study a fundamental problem that arises in a wireless ad hoc network with directional transmission (e.g., using directional antennas), where nodes are randomly placed with their transmission footprints (each as a sector) aligned toward the destinations. Only the nodes located in the transmission footprint of a transmitter act as forwarders. Our study addresses connectivity of this setting. We first examine through simulation the percolation probability and the number of cross-area paths available to directional transmission, at different spread angles of transmission footprints. We observe that there is a critical spread angle, above which there is little impact on these properties. Analytically, we derive upper and lower bounds for the critical spread angle. Moreover, we show that with high probability there exist at least Ω(n/ log n) number of disjoint paths across a strip area of n × Θ(n), when the critical spread angle lies above the threshold. Our results provide insights on optimizing directional transmission in wireless ad hoc networks.
Keywords
ad hoc networks; communication complexity; directive antennas; interference suppression; probability; telecommunication network routing; critical spread angle; cross-area path; directional antennas; directional transmission; interference mitigation; large-scale wireless ad hoc network; local transmission; multihop wireless ad hoc network; per-hop forwarding strategy; percolation probability; signal strength; transmission footprint; Directional antennas; Lattices; Mobile ad hoc networks; Road transportation; Strips; Transmitters; Wireless networks; Connectivity; Directional Antenna; Directional Forwarding; Oriented Percolation Theory;
fLanguage
English
Publisher
ieee
Conference_Titel
INFOCOM, 2012 Proceedings IEEE
Conference_Location
Orlando, FL
ISSN
0743-166X
Print_ISBN
978-1-4673-0773-4
Type
conf
DOI
10.1109/INFCOM.2012.6195793
Filename
6195793
Link To Document