English

Fundamental Limits of Multiple-Access Integrated Sensing and Communication Systems

Information Theory 2025-06-19 v4 math.IT

Abstract

A state-dependent discrete memoryless multiple access channel is considered to model an integrated sensing and communication system, where two transmitters wish to convey messages to a receiver while simultaneously estimating the state parameter sequences through echo signals. In particular, the sensing state parameters are assumed to be correlated with the channel state. In this setup, improved inner and outer bounds for capacity-distortion region are derived. The inner bound is based on an achievable scheme that combines message cooperation and joint compression of past transmitted codewords and echo signals at each transmitter, resulting in unified cooperative communication and sensing. The outer bound is based on the ideas of dependence balance for communication rate, genie-aided state estimator and rate-limited constraints on sensing distortion. The proposed inner and outer bounds are proved to improve the state-of-the-art bounds. Finally, numerical examples are provided to demonstrate that our new inner and outer bounds strictly improve the existing results.

Keywords

Cite

@article{arxiv.2205.05328,
  title  = {Fundamental Limits of Multiple-Access Integrated Sensing and Communication Systems},
  author = {Yao Liu and Min Li and An Liu and Lawrence Ong and Aylin Yener},
  journal= {arXiv preprint arXiv:2205.05328},
  year   = {2025}
}

Comments

25 pages, 10 figures, published in TIT

R2 v1 2026-06-24T11:13:56.712Z