This dissertation investigates stability conditions and approximate steady-state performance measures for unreliable, single-server retrial queues operating in a randomly evolving environment. In such systems, arriving customers that find the server busy or failed join a retrial queue from which they attempt to regain access to the server at random intervals. Such models are useful for the performance evaluation of communications and computer networks which are characterized by time-varying arrival, service and failure rates. To model this time-varying behavior, we study systems whose parameters are modulated by a finite Markov process. Two distinct cases are analyzed. The first considers systems with Markov-modulated arrival, service, retr...
In this paper, we consider a retrial queueing system of M/G/1 type with an unreliable server, collis...
This paper deals with the stability of a retrial queueing system with two orbits, abandoned and feed...
We consider a multi-server retrial queueing model in which customers arrive according to a Markovian...
This dissertation investigates stability conditions and approximate steady-state performance measure...
The object of this paper is to study joint and marginal distributions of the system states at any ar...
We analyze an unreliable M/M/1 retrial queue with infinite-capacity orbit and normal queue. Retrial ...
This thesis considers the performance evaluation of an M/M/2 retrial queue for which both servers ar...
Queueing system with limited processor sharing, which operates in the Markovian random environment, ...
Queueing system with limited processor sharing, which operates in the Markovian random environment, ...
This thesis considers the performance evaluation of an M/M/2 retrial queue for which both servers ar...
We present firstly in this thesis a survey of the more important methods used in establishing stabil...
We present firstly in this thesis a survey of the more important methods used in establishing stabil...
In this paper we consider a single server batch arrival non-Markovian retrial queueing model with no...
We study the Markov chain underlying the considered queueing system obtaining the gen- erating funct...
In this paper, we study a multi-server queueing system with retrials and an infinite orbit. The arri...
In this paper, we consider a retrial queueing system of M/G/1 type with an unreliable server, collis...
This paper deals with the stability of a retrial queueing system with two orbits, abandoned and feed...
We consider a multi-server retrial queueing model in which customers arrive according to a Markovian...
This dissertation investigates stability conditions and approximate steady-state performance measure...
The object of this paper is to study joint and marginal distributions of the system states at any ar...
We analyze an unreliable M/M/1 retrial queue with infinite-capacity orbit and normal queue. Retrial ...
This thesis considers the performance evaluation of an M/M/2 retrial queue for which both servers ar...
Queueing system with limited processor sharing, which operates in the Markovian random environment, ...
Queueing system with limited processor sharing, which operates in the Markovian random environment, ...
This thesis considers the performance evaluation of an M/M/2 retrial queue for which both servers ar...
We present firstly in this thesis a survey of the more important methods used in establishing stabil...
We present firstly in this thesis a survey of the more important methods used in establishing stabil...
In this paper we consider a single server batch arrival non-Markovian retrial queueing model with no...
We study the Markov chain underlying the considered queueing system obtaining the gen- erating funct...
In this paper, we study a multi-server queueing system with retrials and an infinite orbit. The arri...
In this paper, we consider a retrial queueing system of M/G/1 type with an unreliable server, collis...
This paper deals with the stability of a retrial queueing system with two orbits, abandoned and feed...
We consider a multi-server retrial queueing model in which customers arrive according to a Markovian...