English

Toward Native ISAC Support in O-RAN Architectures for 6G

Networking and Internet Architecture 2026-03-05 v1

Abstract

ISAC is an emerging paradigm in 6G networks that enables environmental sensing using wireless communication infrastructure. Current O-RAN specifications lack the architectural primitives for sensing integration: no service models expose physical-layer observables, no execution frameworks support sub-millisecond sensing tasks, and fronthaul interfaces cannot correlate transmitted waveforms with their reflections. This article proposes three extensions to O-RAN for monostatic sensing, where transmission and reception are co-located at the base station. First, we specify sensing dApps at the O-DU that process IQ samples to extract delay, Doppler, and angular features. Second, we define E2SM-SENS, a service model enabling xApps to subscribe to sensing telemetry with configurable periodicity. Third, we identify required Open Fronthaul metadata for waveform-echo association. We validate the architecture through a prototype implementation using beamforming and Full-Duplex operation, demonstrating closed-loop control with median end-to-end latency suitable for near-real-time sensing applications. While focused on monostatic configurations, the proposed interfaces extend to bistatic and cooperative sensing scenarios.

Keywords

Cite

@article{arxiv.2603.03607,
  title  = {Toward Native ISAC Support in O-RAN Architectures for 6G},
  author = {Eduardo Baena and Rajesh Krishnan and Mai Vu and Gil Zussman and Dimitrios Koutsonikolas},
  journal= {arXiv preprint arXiv:2603.03607},
  year   = {2026}
}
R2 v1 2026-07-01T11:02:16.218Z