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Analysis of an MAP/PH/1 Queue with Flexible Group Service

): 485–501, DOI: 10.2478/amcs-2014-0036. Klemm, A., Lindermann, C. and Lohmann, M. (2003). Modelling IP traffic using the batch Markovian arrival process, Performance Evaluation 54 (2): 149–173. Lucatoni, D. (1991). New results on the single server queue with a batch Markovian arrival process, Communication in Statistics: Stochastic Models 7 (1): 1–46.

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Robust multisensor fault tolerant model-following MPC design for constrained systems

-8574. Mhaskar, P., Gani, A. and Christofides, P. (2006). Fault-tolerant control of nonlinear processes: Performance-based reconfiguration and robustness, International Journal of Robust Nonlinear Control   16 (3): 91-111. Ocampo-Martinez, C. and Puig, V. (2008). Fault-tolerant control model predictive control within the hybrid systems framework: Application to sewer networks, International Journal of Adaptive Control and Signal Processing   23 (8): 757-787. Patwardhan, S., Manuja, S., Narsimhan, S. and Shah, S. (2006

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A discrete-time system with service control and repairs

-564. Atencia, I., Fortes, I. and S´anchez, S. (2013b). Discrete-time queueing system with expulsions, Communications in Computer and Information Science 356(1): 20-25. Atencia, I. and Moreno, P. (2004). The discrete-time Geo/Geo/1 queue with negative customers and disasters, Computers and Operations Research 31(9): 1537-1548. Atencia, I. and Moreno, P. (2005). A single-server G-queue in discrete-time with geometrical arrival and service process, Performance Evaluation 59(1): 85-97. Atencia, I. and Pechinkin, A. (2012). A

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Semi-Markov-Based Approach for the Analysis of Open Tandem Networks with Blocking and Truncation

blocking and Markovian arrival process, Queueing Systems 41(4): 343-370. Heindl, A. (2003). Decomposition of general queueing networks with MMPP inputs and customer losses, Performance Evaluation 51(2-4): 117-136. Kaufman, J.S. and Rege, K.M. (1996). Blocking in a shared resource environment with batched arrival processes, Performance Evaluation 24(4): 249-263. Korolyuk, V.S. and Korolyuk, V.V. (1999). Stochastic Models of Systems , Kluwer Academic Publishers, Dordrecht

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Transient and stationary characteristics of a packet buffer modelled as an MAP/SM/1/b system

, IEEE/ACM Transactions on Networking 11 (6): 948–958. Janowski, L. and Owezarski, P. (2010). Assessing the accuracy of using aggregated traffic traces in network engineering, Telecommunication Systems 43 (3–4): 223–236. Janssen, J. and Manca, R. (2006). Applied Semi-Markov Processes , Springer, Science+Business Media, New York, NY. Klemm, A., Klemm, E., Lindemann, C. and Lohmann, M. (2003). Modeling IP traffic using the batch Markovian arrival process, Performance Evaluation 54 (2): 149–173. Kobayashi, H. and Ren, Q. (1992). A mathematical-theory for

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Performance evaluation of an M/G/n-type queue with bounded capacity and packet dropping

Electrotechnica et Informatica 13(4): 85-90. Klemm, A., Lindemann, C. and Lohmann, M. (2003). Modeling IP traffic using the batch Markovian arrival process, Performance Evaluation 54(2): 149-173. Liu, S., Basar, T. and Srikant, R. (2005). Exponential RED: A stabilizing AQM scheme for low- and ligh-speed TCP protocols, IEEE/ACM Transactions on Networking 13(5): 1068-1081. Rosolen, V., Bonaventure, O. and Leduc, G. (1999). A RED discard strategy for ATM networks and its performance evaluation with TCP/IP traffic, Computer

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A discrete-time queueing system with changes in the vacation times

). A discrete-time system queueing system with server breakdowns and changes in the repair times, Annals of Operations Research 235(1): 37-49. Atencia, I. and Moreno, P. (2004). The discrete-time Geo/Geo/1 queue with negative customers and disasters, Computers and Operations Research 31(9): 1537-1548. Atencia, I. and Moreno, P. (2005). A single-server G-queue in discrete-time with geometrical arrival and service process, Performance Evaluation 59(1): 85-97. Bocharov, P.P., D’Apice, C., Pechinkin, A.V. and Salerno, S

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A finite-buffer queue with a single vacation policy: An analytical study with evolutionary positioning

and close-down times and batch Markovian arrival processes, Performance Evaluation 3(54): 225-248. Niu, Z. and Takahashi, Y. (1999). A finite-capacity queue with exhaustive vacation/close-down/setup times and Markovian arrival processes, Queueing Systems 31(1/2): 1-23. Nowak, A. and Woźniak, M. (2008a). Algorithm for optimization of the active module by the use of genetic algorithm, Acta Mechanica Slovaca 3(C): 307-316. Nowak, A. and Woźniak, M. (2008b). Multiresolution derives analysis of module mechatronical systems

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