Most retrial queueing research assumes that each retrial customer has its own orbit, and the retrial customers retry to enter service independently of each other. A small selection of papers assume that the retrial customers themselves form a queue, and only one customer from the retrial queue can attempt to enter at any given time. Retrial queues with exponential retrial times have been extensively studied, but little attention has been paid to retrial queues with general retrial times. In this thesis, we consider four retrial queueing models of the type in which the retrial customers form their own queue. Model I is a type of M/G/1 retrial queue with general retrial times and server subject to breakdowns and repairs. In addition, we allow...
We consider in this paper the stability of retrial queues with a versatile retrial policy. We obtain...
AbstractIn this paper, retrial queue with unreliable server and bulk arrivals is investigated. The s...
AbstractWe consider queuing systems where customers are not allowed to queue; instead of that they m...
We describe main models and results of a new branch of the queueing theory, theory of retrial queues...
In this paper we consider a single server batch arrival non-Markovian retrial queueing model with no...
In this paper, the transient behavior of an M/M/1 retrial queueing model is analyzed where the custo...
This paper presents an overview of one-server queueing models with retrials in discrete-time. In all...
We consider a single server retrial queueing system in which arrivals occur according to a Markovian...
This paper deals with the stability of a retrial queueing system with two orbits, abandoned and feed...
In this paper, we consider a retrial queueing system of M/G/1 type with an unreliable server, collis...
There is an extensive literature on retrial queueing models. While a majority of the literature on r...
There is an extensive literature on retrial queueing models. While a majority of the literature on r...
In queueing theory, the phenomenon that customers get impatient and renege from the system when the ...
AbstractThis paper is concerned with the analysis of a single-server queue with Bernoulli vacation s...
AbstractWe consider a single server retrial queueing system in which each customer (primary or retri...
We consider in this paper the stability of retrial queues with a versatile retrial policy. We obtain...
AbstractIn this paper, retrial queue with unreliable server and bulk arrivals is investigated. The s...
AbstractWe consider queuing systems where customers are not allowed to queue; instead of that they m...
We describe main models and results of a new branch of the queueing theory, theory of retrial queues...
In this paper we consider a single server batch arrival non-Markovian retrial queueing model with no...
In this paper, the transient behavior of an M/M/1 retrial queueing model is analyzed where the custo...
This paper presents an overview of one-server queueing models with retrials in discrete-time. In all...
We consider a single server retrial queueing system in which arrivals occur according to a Markovian...
This paper deals with the stability of a retrial queueing system with two orbits, abandoned and feed...
In this paper, we consider a retrial queueing system of M/G/1 type with an unreliable server, collis...
There is an extensive literature on retrial queueing models. While a majority of the literature on r...
There is an extensive literature on retrial queueing models. While a majority of the literature on r...
In queueing theory, the phenomenon that customers get impatient and renege from the system when the ...
AbstractThis paper is concerned with the analysis of a single-server queue with Bernoulli vacation s...
AbstractWe consider a single server retrial queueing system in which each customer (primary or retri...
We consider in this paper the stability of retrial queues with a versatile retrial policy. We obtain...
AbstractIn this paper, retrial queue with unreliable server and bulk arrivals is investigated. The s...
AbstractWe consider queuing systems where customers are not allowed to queue; instead of that they m...