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Analysis of a 2-state discrete-time queue with stochastic state-period lengths and state-dependent server availability and arrivals

Freek Verdonck (UGent) , Herwig Bruneel (UGent) and Sabine Wittevrongel (UGent)
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Keywords
Modelling and Simulation, Computer Networks and Communications, Hardware and Architecture, Software, Queueing theory, Discrete-time, Multiserver, Correlation, BEHAVIOR, SYSTEMS, BUFFERS, MODEL

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Citation

Please use this url to cite or link to this publication:

MLA
Verdonck, Freek, et al. “Analysis of a 2-State Discrete-Time Queue with Stochastic State-Period Lengths and State-Dependent Server Availability and Arrivals.” PERFORMANCE EVALUATION, vol. 135, 2019.
APA
Verdonck, F., Bruneel, H., & Wittevrongel, S. (2019). Analysis of a 2-state discrete-time queue with stochastic state-period lengths and state-dependent server availability and arrivals. PERFORMANCE EVALUATION, 135.
Chicago author-date
Verdonck, Freek, Herwig Bruneel, and Sabine Wittevrongel. 2019. “Analysis of a 2-State Discrete-Time Queue with Stochastic State-Period Lengths and State-Dependent Server Availability and Arrivals.” PERFORMANCE EVALUATION 135.
Chicago author-date (all authors)
Verdonck, Freek, Herwig Bruneel, and Sabine Wittevrongel. 2019. “Analysis of a 2-State Discrete-Time Queue with Stochastic State-Period Lengths and State-Dependent Server Availability and Arrivals.” PERFORMANCE EVALUATION 135.
Vancouver
1.
Verdonck F, Bruneel H, Wittevrongel S. Analysis of a 2-state discrete-time queue with stochastic state-period lengths and state-dependent server availability and arrivals. PERFORMANCE EVALUATION. 2019;135.
IEEE
[1]
F. Verdonck, H. Bruneel, and S. Wittevrongel, “Analysis of a 2-state discrete-time queue with stochastic state-period lengths and state-dependent server availability and arrivals,” PERFORMANCE EVALUATION, vol. 135, 2019.
@article{8636387,
  articleno    = {102026},
  author       = {Verdonck, Freek and Bruneel, Herwig and Wittevrongel, Sabine},
  issn         = {0166-5316},
  journal      = {PERFORMANCE EVALUATION},
  keywords     = {Modelling and Simulation,Computer Networks and Communications,Hardware and Architecture,Software,Queueing theory,Discrete-time,Multiserver,Correlation,BEHAVIOR,SYSTEMS,BUFFERS,MODEL},
  language     = {eng},
  pages        = {15},
  title        = {Analysis of a 2-state discrete-time queue with stochastic state-period lengths and state-dependent server availability and arrivals},
  url          = {http://dx.doi.org/10.1016/j.peva.2019.102026},
  volume       = {135},
  year         = {2019},
}

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