arXiv · 2601.12963
Monostatic ISAC Without Full Buffers: Revisiting Spatial Trade-Offs Under Bursty Traffic
Abstract
This work investigates the spatial trade-offs arising from the design of the transmit beamformer in a monostatic integrated sensing and communication (ISAC) base station (BS) under bursty traffic, a crucial aspect necessitated by the integration of communication and sensing functionalities in next-generation wireless systems. In this setting, the BS does not always have data available for transmission. This study compares different ISAC policies and reveals the presence of multiple effects influencing ISAC performance: signal-to-noise ratio (SNR) boosting of data-aided strategies compared to pilot-based ones, saturation of the probability of detection in data-aided strategies due to the non-full-buffer assumption, and, finally, directional masking of sensing targets due to the relative position between target and user. Simulation results demonstrate varying impact of these effects on ISAC trade-offs under different operating conditions, thus guiding the design of efficient ISAC transmission strategies.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Mauro Marchese, Musa Furkan Keskin, Pietro Savazzi, Henk Wymeersch. 2026-01-19. Monostatic ISAC Without Full Buffers: Revisiting Spatial Trade-Offs Under Bursty Traffic. https://doi.org/10.1109/jcs69321.2026.11366023
Cite the original work for its findings. Save a collection to share your selection of sources.