Markovian Queueing System with Discouraged Arrivals and Self-Regulatory Servers

We consider discouraged arrival of Markovian queueing systems whose service speed is regulated according to the number of customers in the system. We will reduce the congestion in two ways. First we attempt to reduce the congestion by discouraging the arrivals of customers from joining the queue. Se...

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Main Authors: K. V. Abdul Rasheed, M. Manoharan
Format: Article
Language:English
Published: Hindawi Limited 2016-01-01
Series:Advances in Operations Research
Online Access:http://dx.doi.org/10.1155/2016/2456135
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spelling doaj-b3f371d4f9ae4e6c82127d0491f154882020-11-24T21:26:02ZengHindawi LimitedAdvances in Operations Research1687-91471687-91552016-01-01201610.1155/2016/24561352456135Markovian Queueing System with Discouraged Arrivals and Self-Regulatory ServersK. V. Abdul Rasheed0M. Manoharan1Department of Statistics, University of Calicut, Kerala 673 635, IndiaDepartment of Statistics, University of Calicut, Kerala 673 635, IndiaWe consider discouraged arrival of Markovian queueing systems whose service speed is regulated according to the number of customers in the system. We will reduce the congestion in two ways. First we attempt to reduce the congestion by discouraging the arrivals of customers from joining the queue. Secondly we reduce the congestion by introducing the concept of service switches. First we consider a model in which multiple servers have three service rates μ1, μ2, and μ (μ1≤μ2<μ), say, slow, medium, and fast rates, respectively. If the number of customers in the system exceeds a particular point K1 or K2, the server switches to the medium or fast rate, respectively. For this adaptive queueing system the steady state probabilities are derived and some performance measures such as expected number in the system/queue and expected waiting time in the system/queue are obtained. Multiple server discouraged arrival model having one service switch and single server discouraged arrival model having one and two service switches are obtained as special cases. A Matlab program of the model is presented and numerical illustrations are given.http://dx.doi.org/10.1155/2016/2456135
collection DOAJ
language English
format Article
sources DOAJ
author K. V. Abdul Rasheed
M. Manoharan
spellingShingle K. V. Abdul Rasheed
M. Manoharan
Markovian Queueing System with Discouraged Arrivals and Self-Regulatory Servers
Advances in Operations Research
author_facet K. V. Abdul Rasheed
M. Manoharan
author_sort K. V. Abdul Rasheed
title Markovian Queueing System with Discouraged Arrivals and Self-Regulatory Servers
title_short Markovian Queueing System with Discouraged Arrivals and Self-Regulatory Servers
title_full Markovian Queueing System with Discouraged Arrivals and Self-Regulatory Servers
title_fullStr Markovian Queueing System with Discouraged Arrivals and Self-Regulatory Servers
title_full_unstemmed Markovian Queueing System with Discouraged Arrivals and Self-Regulatory Servers
title_sort markovian queueing system with discouraged arrivals and self-regulatory servers
publisher Hindawi Limited
series Advances in Operations Research
issn 1687-9147
1687-9155
publishDate 2016-01-01
description We consider discouraged arrival of Markovian queueing systems whose service speed is regulated according to the number of customers in the system. We will reduce the congestion in two ways. First we attempt to reduce the congestion by discouraging the arrivals of customers from joining the queue. Secondly we reduce the congestion by introducing the concept of service switches. First we consider a model in which multiple servers have three service rates μ1, μ2, and μ (μ1≤μ2<μ), say, slow, medium, and fast rates, respectively. If the number of customers in the system exceeds a particular point K1 or K2, the server switches to the medium or fast rate, respectively. For this adaptive queueing system the steady state probabilities are derived and some performance measures such as expected number in the system/queue and expected waiting time in the system/queue are obtained. Multiple server discouraged arrival model having one service switch and single server discouraged arrival model having one and two service switches are obtained as special cases. A Matlab program of the model is presented and numerical illustrations are given.
url http://dx.doi.org/10.1155/2016/2456135
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