This paper proposes a novel 2-D spectrum sensing method to improve environmental awareness capabilities compared with traditional grid-based techniques. Instead of using fixed angles of arrival (AOA), as dictated by a grid of points, the off-grid approaches allow for flexibility in estimating angle displacements at a reduced computational complexity increase. The recovery process is formulated as a regularized maximum likelihood (RML) estimation, leveraging block-sparsity. The optimization is tackled with a maximum block improvement (MBI) method to estimate noise power, the 2-D profile, and angular displacements. Moreover, two refinement strategies are used to improve the angle estimation accuracy. The method is validated through numerical simulations modeling realistic environments.
Off-Grid Space-Frequency Environment Sensing for Next Generation Cognitive Radars / Aubry, A., Babu, P., De Maio, A., Pallotta, L.. - (2025), pp. 414-419. (2025 IEEE Radar Conference, RadarConf 2025 pol 2025) [10.1109/RadarConf2559087.2025.11204963].
Off-Grid Space-Frequency Environment Sensing for Next Generation Cognitive Radars
Aubry A.;De Maio A.;Pallotta L.
2025
Abstract
This paper proposes a novel 2-D spectrum sensing method to improve environmental awareness capabilities compared with traditional grid-based techniques. Instead of using fixed angles of arrival (AOA), as dictated by a grid of points, the off-grid approaches allow for flexibility in estimating angle displacements at a reduced computational complexity increase. The recovery process is formulated as a regularized maximum likelihood (RML) estimation, leveraging block-sparsity. The optimization is tackled with a maximum block improvement (MBI) method to estimate noise power, the 2-D profile, and angular displacements. Moreover, two refinement strategies are used to improve the angle estimation accuracy. The method is validated through numerical simulations modeling realistic environments.I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.


