Experimental Evaluation of a Low-Power Ultra-Wideband Receiver for Spectrum Sensing

arXiv:2609.22134 · eess.SP, cs.IT, cs.LG, math.IT · Submitted 2026-08-24 · Read on arXiv

eess.SP, cs.IT, cs.LG, math.IT

Submitted: 2026-08-24

Updated: 2026-08-24

Comments: 4 pages, 5 figures, accepted in 33rd IEEE International Conference on Electronics Circuits and Systems (ICECS 2026)

License: http://creativecommons.org/licenses/by/4.0/

The gist: Walsh-sequence-based receiver architectures offer an alternative approach for the reception and reconstruction of multiple simultaneous RF signals over wide bandwidths.

Abstract

Walsh-sequence-based receiver architectures offer an alternative approach for the reception and reconstruction of multiple simultaneous RF signals over wide bandwidths. While previous works have focused on the architecture and theoretical operation of Walsh-domain processing, limited experimental results have been reported so far on hardware operation under realistic conditions. This paper presents the experimental evaluation of a Walsh-sequence-based receiver prototype. A measurement campaign was conducted under various signal placement, interference, and receiver configuration scenarios. Reconstructed spectra, Walsh-lane power spectral densities (PSDs), and Error Vector Magnitude (EVM) measurements were used to investigate Walsh-domain signal representation, interference effects, and receiver performance. Finally, dense- spectrum experiments involving up to ten simultaneously active signals demonstrate the potential of the architecture for low power wideband spectrum sensing applications.

Related papers