Title:
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Non-stationary departure process in a batch-arrival queue with finite buffer capacity and threshold-type control mechanism (English) |
Author:
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Kempa, Wojciech M. |
Author:
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Kurzyk, Dariusz |
Language:
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English |
Journal:
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Kybernetika |
ISSN:
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0023-5954 (print) |
ISSN:
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1805-949X (online) |
Volume:
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58 |
Issue:
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1 |
Year:
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2022 |
Pages:
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82-100 |
Summary lang:
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English |
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Category:
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math |
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Summary:
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Non-stationary behavior of departure process in a finite-buffer $M^{X}/G/1/K$-type queueing model with batch arrivals, in which a threshold-type waking up $N$-policy is implemented, is studied. According to this policy, after each idle time a new busy period is being started with the $N$th message occurrence, where the threshold value $N$ is fixed. Using the analytical approach based on the idea of an embedded Markov chain, integral equations, continuous total probability law, renewal theory and linear algebra, a compact-form representation for the mixed double transform (probability generating function of the Laplace transform) of the probability distribution of the number of messages completely served up to fixed time $t$ is obtained. The considered queueing system has potential applications in modeling nodes of wireless sensor networks (WSNs) with battery saving mechanism based on threshold-type waking up of the radio. An illustrating simulational and numerical study is attached. (English) |
Keyword:
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departure process |
Keyword:
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finite-buffer queue |
Keyword:
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$N$-policy |
Keyword:
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power saving |
Keyword:
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transient state |
Keyword:
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wireless sensor network (WSN) |
MSC:
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60K25 |
MSC:
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90B22 |
idZBL:
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Zbl 07511612 |
idMR:
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MR4405948 |
DOI:
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10.14736/kyb-2022-1-0082 |
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Date available:
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2022-04-08T07:53:00Z |
Last updated:
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2022-08-11 |
Stable URL:
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http://hdl.handle.net/10338.dmlcz/149603 |
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Reference:
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