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Bulk Transmissions for S-ALOHA Systems

Authors
Hu, Y.Seo, J.-B.Jin, H.
Issue Date
2022
Publisher
Institute of Electrical and Electronics Engineers Inc.
Keywords
ALOHA random access; Effective Capacity; Stability region; Tail probability
Citation
IEEE Vehicular Technology Conference, v.2022-June
Indexed
SCOPUS
Journal Title
IEEE Vehicular Technology Conference
Volume
2022-June
URI
https://scholarworks.bwise.kr/gnu/handle/sw.gnu/2660
DOI
10.1109/VTC2022-Spring54318.2022.9860404
ISSN
1550-2252
Abstract
This work considers a bulk transmission scheme for slotted ALOHA (S-ALOHA) systems with a finite population of unsaturated terminals. In the system, once a user makes a successful random access (RA) via S-ALOHA, it can transmit C packets to the traffic channel. We examine an effective capacity, which is defined as the maximally admissible mean arrival rate to the system, subject to the constraint that each user's queue does not overflow. To obtain this capacity, we use the large deviation theory on the user's queueing process. For comparison, we also use the dominant pole method in order to obtain the butter overflow probability. We then show that results from the method of using the large deviation theory are asymptotically identical to those from the dominant pole method due to the same decaying rate, and that keeping the traffic load within the effective capacity prevents a user's queue from overflowing in practice. ? 2022 IEEE.
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