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Analysis of M[X]/G/1 retrial queue with two phase service under Bernoulli vacation schedule and random breakdown

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TLDR
The mathematical model is constructed and the probability generating functions of number of customers in the system when it is idle, busy, on vacation and under repair are derived.
Abstract
This paper investigates the steady state behaviour of an M[x]/G/1 retrial queue with two phases of service under Bernoulli vacation schedule and breakdown. Any arriving batch finding the server busy, breakdown or on vacation enters an orbit. Otherwise one customer from the arriving batch enters the service immediately while the rest join the orbit. After completion of each two phases of service, the server either goes for a vacation with probability p or may wait for serving the next customer with probability (1-p). While the server is working with any phase of service, it may breakdown at any instant and the service channel will fail for a short interval of time. We construct the mathematical model and derive the probability generating functions of number of customers in the system when it is idle, busy, on vacation and under repair. Some system performances are obtained.

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Citations
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Journal ArticleDOI

A study on M/G/1 feedback retrial queue with subject to server breakdown and repair under multiple working vacation policy

TL;DR: In this article, a single server feedback retrial queueing system with multiple working vacations and vacation interruption is considered and the steady state probability generating function for the system size is obtained by using the supplementary variable method.
Journal ArticleDOI

Analysis of an unreliable retrial G-queue with working vacations and vacation interruption under Bernoulli schedule

TL;DR: In this paper, a single server retrial queueing system with working vacations is considered, where the regular busy server is subjected to breakdown due to the arrival of negative customers, and the server goes for a working vacation when the orbit becomes empty at the time of service completion for a positive customer.
Journal ArticleDOI

Analysis of an M [X] /G/1 unreliable retrial G -queue with orbital search and feedback under Bernoulli vacation schedule

TL;DR: This paper considers a batch arrival retrial queue with feedback under Bernoulli vacation schedule, where the busy server is subjected to breakdown due to the arrival of negative customers.
Journal ArticleDOI

Supplementary variable technique (SVT) for non-Markovian single server queue with service interruption (QSI)

TL;DR: An overview and literature survey on the performance modeling and analysis of single server, general service queueing system with service interruption using supplementary variable technique and factors causing service interruption such as unreliable server and server vacation are presented.
Journal ArticleDOI

Analysis of an M[X]/(G1, G2)/1 retrial queueing system with balking, optional re-service under modified vacation policy and service interruption

TL;DR: In this paper, the steady state analysis of batch arrival retrial queueing system with two types of service under modified vacation policy, where each type consists of an optional re-service.
References
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Journal ArticleDOI

Stochastic Decompositions in the M/G/1 Queue with Generalized Vacations

TL;DR: In this article, the authors considered a class of M/G/1 queueing models with a server who is unavailable for occasional intervals of time and showed that the stationary number of customers present in the system at a random point in time is distributed as the sum of two or more independent random variables.
Journal ArticleDOI

A survey on retrial queues

TL;DR: The stochastic decomposition property which commonly holds in retrial queues and the relationship between the retrial queue and the queue with server vacations are discussed.
Journal ArticleDOI

Accessible bibliography on retrial queues: Progress in 2000-2009

TL;DR: A bibliography on retrial queues which updates the bibliography published in this journal in Artalejo (1999) is presented, focused on the progress made during the last decade 2000-2009.
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