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Principle and Limit for Guaranteeing the Mean Access Delay in S-ALOHA

Authors
Cao, ZhenyuJin, HuDe, SwadesSeo, Jun-Bae
Issue Date
Nov-2025
Publisher
IEEE Communications Society
Keywords
Access delay; extended Kalman filter; S-ALOHA
Citation
IEEE Wireless Communications Letters, v.15, pp 705 - 709
Pages
5
Indexed
SCIE
SCOPUS
Journal Title
IEEE Wireless Communications Letters
Volume
15
Start Page
705
End Page
709
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/81417
DOI
10.1109/LWC.2025.3637309
ISSN
2162-2337
2162-2345
Abstract
The access delay of Slotted ALOHA (S-ALOHA) is intricately coupled with backoff intervals and the number of backlogged users, while new arrivals continuously join the system according to the input rate. Consequently, guaranteeing a mean access delay constraint is a challenging problem since the system must control these interdependent variables. This work proposes an optimization framework that determines the maximum allowable input rate to satisfy the access delay constraint, where a throughput-maximizing backoff algorithm based on the extended Kalman filter (EKF) is developed. To solve the optimization problem, extensive analysis of S-ALOHA is conducted with access delay characterization. The results demonstrate that while the input rate is constrained through the proposed framework, the proposed EKF-based backoff algorithm successfully guarantees the access delay without the knowledge of the exact backlog size.
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