STABILITY ANALYSIS AND SIMULATION OF N-CLASS RETRIAL SYSTEM WITH CONSTANT RETRIAL RATES AND POISSON INPUTS

Author:

AVRACHENKOV K.1,MOROZOV E.2,NEKRASOVA R.2,STEYAERT B.3

Affiliation:

1. Inria Sophia Antipolis, 2004 Route des Lucioles Sophia Antipolis, 06902, France

2. Institute of Applied Mathematical Research, Karelian Research Centre RAS, and Petrozavodsk State University, Russia

3. SMACS Research Group, Ghent University, St-Pietersnieuwstraat 41, B-9000 Gent, Belgium

Abstract

In this paper, we study a new retrial queueing system with N classes of customers, where a class-i blocked customer joins orbit i. Orbit i works like a single-server queueing system with (exponential) constant retrial time (with rate [Formula: see text]) regardless of the orbit size. Such a system is motivated by multiple telecommunication applications, for instance wireless multi-access systems, and transmission control protocols. First, we present a review of some corresponding recent results related to a single-orbit retrial system. Then, using a regenerative approach, we deduce a set of necessary stability conditions for such a system. We will show that these conditions have a very clear probabilistic interpretation. We also performed a number of simulations to show that the obtained conditions delimit the stability domain with a remarkable accuracy, being in fact the (necessary and sufficient) stability criteria, at the very least for the 2-orbit M/M/1/1-type and M/Pareto/1/1-type retrial systems that we focus on.

Publisher

World Scientific Pub Co Pte Lt

Subject

Management Science and Operations Research,Management Science and Operations Research

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