Fast Collision-Free Acquisition in 1-Persistent Age-Threshold Slotted ALOHA via Role-Protected Counters

📅 2026-09-09
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🤖 AI Summary
该研究提出了一种基于角色保护计数器的时隙ALOHA协议,以解决1-持续年龄阈值时隙ALOHA在获取阶段存在的性能问题,通过分离预约内存与信息年龄来减少冲突。
📝 Abstract
Goal-oriented sensing, estimation, and control benefit from prompt, regular access to task-relevant updates. Although 1-persistent age-threshold slotted ALOHA (1-pTSA) can self-organize into a periodic collision-free schedule, its acquisition transient can dominate finite-horizon performance. We propose role-protected counter-threshold slotted ALOHA (RP--CTSA), which separates reservation memory from the age of information (AoI). A scheduled singleton retains its phase after colliding with active contenders, whereas a collision involving multiple scheduled nodes releases them immediately; AoI resets only after a decoded update. The protocol requires individual acknowledgments and a binary RELEASE/HOLD indication, but no centralized phase assignment or identification of colliders. Let $n$ denote the number of nodes and $Γ_n$ the counter threshold. Under inverse-population access scaling, the acquisition dynamics admit an exact pure-death representation. When $Γ_n=n$, the acquisition time is $O(n^2)$; when $Γ_n\sim(1+θ)n$, with $θ>0$, it is $O(n\log n)$. Simulations confirm both regimes and show substantial finite-horizon AoI gains over 1-pTSA while preserving every collision-free schedule.
Problem

Research questions and friction points this paper is trying to address.

slotted ALOHA
collision-free schedule
acquisition transient
finite-horizon performance
Innovation

Methods, ideas, or system contributions that make the work stand out.

Role-Protected Counters
Age of Information (AoI)
Slotted ALOHA
Collision-Free Schedule
Decentralized Control
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P
Plínio S. Dester
School of Engineering, São Paulo State University (UNESP), São João da Boa Vista 13876-750, Brazil