English

A Comparison Between Co-Located and Distributed MIMO Deployments in OFDM-ISAC Networks

Information Theory 2026-05-07 v1 Signal Processing math.IT

Abstract

This paper investigates network-level integrated sensing and communication (ISAC) under two fundamentally different topology configurations: cell-free massive MIMO (CF-mMIMO) and multi-cell massive MIMO (MC-mMIMO). A unified OFDM-based waveform is adopted for both architectures as the key enabler for ISAC functionalities. The CF system exploits distributed access points (APs) and a scalable user-target-centric operation, whereas the MC system relies on co-located transmit-receive arrays with conventional cell-centric deployment. For both architectures, we derive a GLRT-based sensing detector and the corresponding sensing SNR expressions. We then examine a series of case studies investigating how the number of OFDM subcarriers, the transceiver allocation strategy, and the antenna/node distribution across the network affect the sensing performance. The results consistently demonstrate that CF-mMIMO provides more robust and higher sensing performance across most tested scenarios, particularly when transmit resources or antenna elements are spatially distributed. These findings highlight the inherent advantages of CF deployments for next-generation ISAC networks.

Keywords

Cite

@article{arxiv.2605.05059,
  title  = {A Comparison Between Co-Located and Distributed MIMO Deployments in OFDM-ISAC Networks},
  author = {Maryam Darabi and Sergi Liesegang and Emanuele Grossi and Stefano Buzzi},
  journal= {arXiv preprint arXiv:2605.05059},
  year   = {2026}
}

Comments

Accepted to the 32nd International Conference on Telecommunications (ICT 2026), Thessaloniki, Greece

R2 v1 2026-07-01T12:53:03.807Z