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Erschienen in: Queueing Systems 3-4/2019

08.02.2019

Discrete-time queue with batch renewal input and random serving capacity rule: \(GI^X/ Geo^Y/1\)

verfasst von: F. P. Barbhuiya, U. C. Gupta

Erschienen in: Queueing Systems | Ausgabe 3-4/2019

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Abstract

In this paper, we provide a complete analysis of a discrete-time infinite buffer queue in which customers arrive in batches of random size such that the inter-arrival times are arbitrarily distributed. The customers are served in batches by a single server according to the random serving capacity rule, and the service times are geometrically distributed. We model the system via the supplementary variable technique and further use the displacement operator method to solve the non-homogeneous difference equation. The analysis done using these methods results in an explicit expression for the steady-state queue-length distribution at pre-arrival and arbitrary epochs simultaneously, in terms of roots of the underlying characteristic equation. Our approach enables one to estimate the asymptotic distribution at a pre-arrival epoch by a unique largest root of the characteristic equation lying inside the unit circle. With the help of few numerical results, we demonstrate that the methodology developed throughout the work is computationally tractable and is suitable for light-tailed inter-arrival distributions and can also be extended to heavy-tailed inter-arrival distributions. The model considered in this paper generalizes the previous work done in the literature in many ways.

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Metadaten
Titel
Discrete-time queue with batch renewal input and random serving capacity rule:
verfasst von
F. P. Barbhuiya
U. C. Gupta
Publikationsdatum
08.02.2019
Verlag
Springer US
Erschienen in
Queueing Systems / Ausgabe 3-4/2019
Print ISSN: 0257-0130
Elektronische ISSN: 1572-9443
DOI
https://doi.org/10.1007/s11134-019-09600-7

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