DocumentCode :
2074070
Title :
Multi-channel design for random CSMA wireless networks: A stochastic geometry approach
Author :
Elsawy, Hesham ; Hossain, Ekram ; Camorlinga, Sergio
fYear :
2013
fDate :
9-13 June 2013
Firstpage :
1656
Lastpage :
1660
Abstract :
Topological randomness is an intrinsic characteristic of large scale ad-hoc and sensor networks. For networks with random topologies, choosing the operating parameters that govern the performance metrics is very challenging. Calculating the minimum number of channels required to accommodate a certain population of co-existing star connected networks (SCNs), or quantifying the performance degradation if the minimum number of channels in not available is the main focus of this paper. The main performance metric in our analysis is the self admission failure probability (blocking probability). We relax the single channel assumption that has always been used in the stochastic geometry analysis of random wireless networks. We show that the intensity of the coexisting networks does not increase linearly with the number of channels, and that the rate of increase of the intensity of the coexisting networks decreases with the number of channels. By using graph theory, we bound the number of channels required for accommodating a certain intensity of coexisting SCNs and provide a good initial point for the numerical optimization problem.
Keywords :
ad hoc networks; carrier sense multiple access; geometry; graph theory; numerical analysis; probability; stochastic processes; stochastic programming; telecommunication network reliability; telecommunication network topology; wireless channels; wireless sensor networks; SCN; admission failure probability; blocking probability; coexisting star connected network; graph theory; large scale ad-hoc network; large scale sensor network; multichannel design; numerical optimization problem; random CSMA wireless network; random topology; single channel assumption; stochastic geometry approach; wireless channel; Ad hoc networks; Geometry; Multiaccess communication; Protocols; Sensors; Stochastic processes; Wireless networks; Ad-hoc and sensor networks; CSMA; hard core point process (HCPP); stochastic geometry;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications (ICC), 2013 IEEE International Conference on
Conference_Location :
Budapest
ISSN :
1550-3607
Type :
conf
DOI :
10.1109/ICC.2013.6654754
Filename :
6654754
Link To Document :
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