Collision-Isolated Asynchronous Access for High-Density IoT Networks

Citations

WEB OF SCIENCE

0
Citations

SCOPUS

0

초록

Low Power Wide Area Networks (LPWANs) such as LoRa commonly adopt unslotted ALOHA for its simplicity, but the resulting throughput ceiling (0.183 frames/frame-time) limits scalability. We propose a heterogeneous multi-channel collision resolution system that partitions channels into contention channels and dedicated collision resolution channels (CRC). By isolating post-collision retransmissions in CRCs, the system prevents them from being interfered with by new packet transmissions on contention channels, improving reliability and utilization. We develop a renewal-reward-based analytical framework to characterize per-channel throughput and to derive the optimal transmission attempt rate and the optimal ratio between contention and collision resolution channels. Building on this analysis, we design an online Bayesian backoff control algorithm that adapts device backoff rates using real-time backlog estimation with minimal computational and communication overhead. Analysis and simulation results show that the proposed system achieves 0.409 frames/frame-time per channel, exceeding the throughput of unslotted ALOHA by 123%, while maintaining bounded delay and stable operation even under time-varying, temporally correlated traffic.

키워드

Information rates; Throughput; Timing; Internet of Things; Modeling; Algorithms; Broadcasting; Feedback; LoRa; Synchronization; ALOHA; collision resolution; Internet of Things (IoT); low power wide area networks (LPWANs); throughput analysis; ALOHA
제목
Collision-Isolated Asynchronous Access for High-Density IoT Networks
저자
Fan, Song; Dou, Zhi; Seo, Jun-Bae; Jin, Hu
DOI
10.1109/TCOMM.2026.3725063
발행일
2026-08
유형
Article
저널명
IEEE Transactions on Communications
권
74
페이지
12991 ~ 13005