DocumentCode
2581095
Title
A novel velocity-dependent directional probability function based call admission control scheme in wireless multimedia communications
Author
Islam, Md Minarul ; Murshed, M. ; Dooley, L.S.
Author_Institution
Gippsland Sch. of Comput. & Info. Tech, Monash Univ., Churchill, Vic., Australia
fYear
2004
fDate
15-17 April 2004
Firstpage
77
Lastpage
83
Abstract
This paper proposes a novel velocity support call admission scheme through defining a new directional probability function and a new technique of estimating the reservation time window. The projected velocity-dependent directional probability function, with a negative exponential distribution, is based on the assumption that both the probability of changing direction and the rate of change are higher for slow rather than fast moving mobile units. In this paper, the reservation time window is estimated more accurately through considering the estimated travel distance and average cell dwelling time rather than considering finite number of paths as proposed in many recent studies. The new scheme is compared against the existing predictive mobility support scheme using extensive real-scenario simulations. Results prove the new scheme to be very effective in achieving superior performance in terms of QoS parameters and also reduced number of overhead message transmissions.
Keywords
exponential distribution; mobile radio; multimedia communication; quality of service; telecommunication congestion control; QoS parameters; call admission control; exponential distribution; predictive mobility support scheme; reservation time window estimation; velocity-dependent directional probability function; wireless multimedia communications; Admission control; Australia; Bandwidth; Base stations; Call admission control; Exponential distribution; Multimedia communication; Predictive models; Probability; Wireless communication;
fLanguage
English
Publisher
ieee
Conference_Titel
Performance, Computing, and Communications, 2004 IEEE International Conference on
Conference_Location
Phoenix, AZ, USA
Print_ISBN
0-7803-8396-6
Type
conf
DOI
10.1109/PCCC.2004.1394946
Filename
1394946
Link To Document