English

Slotted Aloha for Networked Base Stations with Spatial and Temporal Diversity

Information Theory 2014-01-28 v1 math.IT

Abstract

We consider framed slotted Aloha where mm base stations cooperate to decode messages from nn users. Users and base stations are placed uniformly at random over an area. At each frame, each user sends multiple replicas of its packet according to a prescribed distribution, and it is heard by all base stations within the communication radius rr. Base stations employ a decoding algorithm that utilizes the successive interference cancellation mechanism, both in space--across neighboring base stations, and in time--across different slots, locally at each base station. We show that there exists a threshold on the normalized load G=n/(τm)G=n/(\tau m), where τ\tau is the number of slots per frame, below which decoding probability converges asymptotically (as n,m,τn,m,\tau\rightarrow \infty, r0r\rightarrow 0) to the maximal possible value--the probability that a user is heard by at least one base station, and we find a lower bound on the threshold. Further, we give a heuristic evaluation of the decoding probability based on the and-or-tree analysis. Finally, we show that the peak throughput increases linearly in the number of base stations.

Keywords

Cite

@article{arxiv.1401.6810,
  title  = {Slotted Aloha for Networked Base Stations with Spatial and Temporal Diversity},
  author = {Dusan Jakovetic and Dragana Bajovic and Dejan Vukobratovic and Vladimir Crnojevic},
  journal= {arXiv preprint arXiv:1401.6810},
  year   = {2014}
}

Comments

extended version of a conference paper submitted on Jan 24, 2014

R2 v1 2026-06-22T02:55:19.717Z