DocumentCode
1303497
Title
Computation of Blocking Probability for Large Circuit Switched Networks
Author
Abramov, Vyacheslav ; Li, Shuo ; Wang, Meiqian ; Wong, Eric W M ; Zukerman, Moshe
Author_Institution
Centre for Adv. Internet Archit., Swinburne Univ., Australia
Volume
16
Issue
11
fYear
2012
fDate
11/1/2012 12:00:00 AM
Firstpage
1892
Lastpage
1895
Abstract
The ever-growing Internet and the mounting evidence to the important role of circuit switching motivate the need for an accurate and scalable means for performance evaluation of large circuit switched networks. Previous work has shown that the Erlang Fixed Point Approximation (EFPA) achieves accurate results for such networks where the number of channels (circuits) per link is large. However, a conventional application of EFPA for large networks is computationally prohibitive. In cases where the EFPA solution is unattainable, we propose, in this paper, to use an asymptotic approximation, which we call A-EFPA, for the link blocking probability and demonstrate savings of many orders of magnitudes in computation time for blocking probability approximation in realistically sized networks with large number of circuits per link. We demonstrate for NSFNet and Internet2 accurate calculations of the blocking probability using simulations, EFPA and A-EFPA, where each of these three methods is used for a different range of parameter values.
Keywords
Internet; approximation theory; performance evaluation; probability; switched networks; telecommunication switching; A-EFPA; Erlang fixed point approximation; Internet2; NSFNet; asymptotic approximation; large circuit switched network; link blocking probability approximation; performance evaluation; Approximation methods; Equations; Integrated circuit modeling; Mathematical model; Optical switches; Probability; Switching circuits; Erlang B formula; Erlang fixed point approximation; blocking probability; circuit switched networks;
fLanguage
English
Journal_Title
Communications Letters, IEEE
Publisher
ieee
ISSN
1089-7798
Type
jour
DOI
10.1109/LCOMM.2012.092112.121557
Filename
6317099
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