DocumentCode :
1213742
Title :
Joining the right queue: a state-dependent decision rule
Author :
Krishnan, K.R.
Author_Institution :
Bellcore, Morristown, NJ, USA
Volume :
35
Issue :
1
fYear :
1990
fDate :
1/1/1990 12:00:00 AM
Firstpage :
104
Lastpage :
108
Abstract :
The problem of assigning customers to one of several parallel queues so as to minimize the average time spent in the system (sojourn time) is studied as a Markov decision process. It is shown how the approach developed by K.R. Krishman and T.J. Ott (Proc. 25th IEEE Conf. Decision Contr. Dec. 1986, p.2124-8) to investigate state-dependent routing of voice traffic for blocking minimization can also be used for sojourn minimization for data traffic. For queues in parallel, this approach produces a rule, called the `separable´ rule, which is a generalization of the `join the shortest queue´ rule to the case of dissimilar queues, reducing to the shortest queue rule when the queues are all alike. Numerical results show that in cases where the queues are dissimilar in both the service rates and numbers of their servers, the separable rule is strikingly superior to the shortest queue rule; if the dissimilarities are limited to differences in the service rates, the separable rule practically always is better than the shortest queue rule; if the dissimilarities consist only of the numbers of servers being different, then the shortest queue rule does better than the separable rule in most instances
Keywords :
Markov processes; decision theory; queueing theory; Markov decision process; customer assignment; data traffic; decision theory; parallel queues; queueing theory; separable rule; sojourn time; state-dependent decision rule; Automatic control; Computer simulation; Filtering; Kalman filters; Linear systems; Parallel algorithms; Reactive power; Real time systems; Silicon compounds; Traffic control;
fLanguage :
English
Journal_Title :
Automatic Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9286
Type :
jour
DOI :
10.1109/9.45156
Filename :
45156
Link To Document :
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