Published February 28, 2026 | Version v1

Hybrid Free-Space Optical / cmWave Transmission over Shared Antenna Aperture

  • 1. ROR icon Austrian Institute of Technology
  • 2. ROR icon Microsoft Research (United Kingdom)

Description

Hybrid signal transmission over both free-space optics (FSO) and radio-frequency (RF) carriers can highly benefit from compact air interfaces when adopting shared-aperture antenna concepts. Towards that, we evaluated lensed horn antennas as consolidated air interface compatible with FSO and FR3-band transmission. To simplify the remote radio head further, the joint air interface is paired with mode-selective signal coding and optical modulation to yield noise-robust radio signal transmission in the FSO mode while reaping the benefits of photonic up-conversion to the FR3 band in the RF mode. Evaluation of the hybrid FSO/FR3 transmission over shared antenna aperture yields error vector magnitudes of 5.9% and 9.4% for radio signal transmission in FSO and FR3-band modes over an end-to-end link configuration that involves a fronthauled remote radio head with a compatible optical budget of up to 19 dB, a wireless trunk link for signal relay to a distribution node and local wireless access.

Files

AAM_preprint_JLTshared.pdf

Files (2.7 MB)

Name Size Download all
md5:34d929238c3cf784a804cb583bce820f
2.7 MB Preview Download

Additional details

Funding

European Commission
6G-EWOC - AI-Enhanced fibre-Wireless Optical 6G network in support of connected mobility 101139182