Abstract
The paper address resource allocation in an LTE call with both human-to-human and machine-to-machine (M2M) communications. M2M aggregation and access barring are considered as a means to reduce congestion due to the nature of M2M traffic. The cell is modelled as a multiservice queueing system with streaming and elastic customers. Resources for M2M communications are allocated in batches of fixed size; requests for them arrive according to a Markovian arrival process. We obtain the stationary probability distribution of the system and formulas for its performance measures and propose an algorithm for their computation.
This work has been financially supported by the Russian Science Foundation and the Department of Science and Technology (India) via grant #16-49-02021 and INT/RUS/RFS/16 for the joint research project by the V.A. Trapeznikov Institute of control Sciences and the CMS College Kottayam.
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Vishnevsky, V.M., Samouylov, K.E., Naumov, V.A., Krishnamoorthy, A., Yarkina, N. (2017). Multiservice Queueing System with MAP Arrivals for Modelling LTE Cell with H2H and M2M Communications and M2M Aggregation. In: Vishnevskiy, V., Samouylov, K., Kozyrev, D. (eds) Distributed Computer and Communication Networks. DCCN 2017. Communications in Computer and Information Science, vol 700. Springer, Cham. https://doi.org/10.1007/978-3-319-66836-9_6
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DOI: https://doi.org/10.1007/978-3-319-66836-9_6
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