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The MAP/PH/N/infinity Queueing-Inventory System With Demands From a Random Environment
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Title
The MAP/PH/N/infinity Queueing-Inventory System With Demands From a Random Environment
Issued Date
2022-04
Citation
ANBAZHAGAN, N. (2022-04). The MAP/PH/N/infinity Queueing-Inventory System With Demands From a Random Environment. IEEE Access, 10, 47371–47383. doi: 10.1109/ACCESS.2022.3170065
Type
Article
Author Keywords
Infinite queueMarkovian arrival processmulti-serverphase-type distributionrandom environment
Keywords
CUSTOMERS
ISSN
2169-3536
Abstract
This study investigates a multi-server queueing-inventory system in a random environment. The system has an unlimited waiting space and an inventory capacity of S units. The customer arrives at the system according to the Markovian arrival process. Whenever all the servers are busy, an arriving customer either goes to an unlimited waiting space or leaves the system. And if there is a free server with positive inventory, then the arriving customer gets service immediately. Inventories are filled under the instantaneous replenishment policy. We consider that the service time follows a phase-type distribution, and we assess the joint probability distribution of the inventory level and the number of customers in the steady-state case. On top of that, we extract the sojourn time distributions of arbitrary customers using the Laplace-Stieltjes transform. Finally, a few numerical examples are provided to illustrate our mathematical model.
URI
http://hdl.handle.net/20.500.11750/17462
DOI
10.1109/ACCESS.2022.3170065
Publisher
Institute of Electrical and Electronics Engineers Inc.
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