Two channel assignment policies are considered for a Kelly type
loss network with an additional channel continuity requirement. It
is assumed that the channels on any given link have distinct
identities, and that a connection should be assigned channels with
a common identity on all links of its route. Such constraints
arise in circuit switched WDM optical networks and wireless
cellular networks. A functional law of large numbers, which was
previously developed by Hunt and Kurtz and later refined by
Zachary and Ziedins, is adapted to analyze a network with two links
and three connection types. Asymptotically exact fluid-type
approximations for the network process are obtained and their
operating points are characterized. The results lead to asymptotic
call blocking rates and point out that in cases of practical
interest, random channel assignment has asymptotically the same
blocking performance with more sophisticated channel assignment
policies.
@article{1069786506,
author = {Alanyali, Murat},
title = {Asymptotically exact analysis of a loss network with channel continuity},
journal = {Ann. Appl. Probab.},
volume = {13},
number = {1},
year = {2003},
pages = { 1474-1493},
language = {en},
url = {http://dml.mathdoc.fr/item/1069786506}
}
Alanyali, Murat. Asymptotically exact analysis of a loss network with channel continuity. Ann. Appl. Probab., Tome 13 (2003) no. 1, pp. 1474-1493. http://gdmltest.u-ga.fr/item/1069786506/