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Exploiting cognition in ISAR processing for spectral compatibility applications

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2026-01-08

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2832-7357

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Rosamilia M, Aubry A, Balleri A, et al., (2026) Exploiting cognition in ISAR processing for spectral compatibility applications. IEEE Transactions on Radar Systems, Volume 4, 2026, pp. 194-206

Abstract

This article introduces and analyzes the concept of a cognitive inverse synthetic aperture radar (ISAR) ensuring spectral compatibility in crowded electromagnetic environments. In such a context, the proposed approach alternates between environmental perception, recognizing possible emitters in its frequency range, and an action stage, synthesizing and transmitting a tailored radar waveform to achieve the desired imaging task while guaranteeing spectral coexistence with overlaid emitters. The perception is carried out by a spectrum sensing module providing the true relevant spectral parameters of the sources in the environment. The action stage employs a tailored signal design process, synthesizing a radar waveform with bespoke spectral notches, enabling ISAR imaging over a wide spectral bandwidth without interfering with other radio frequency (RF) sources. A key enabling requirement for the proposed application is the capability to successfully recover possible missing data in the frequency domain (induced by spectral notches) and in the slow-time dimension (enabling concurrent RF activities still in a cognitive fashion). This process is carried out by resorting to advanced methods based on either the compressed-sensing framework or a rank-minimization (RM) recovery strategy. The capabilities of the proposed system are assessed by exploiting a dataset of drone measurements in the frequency band between 13 and 15 GHz. Results highlight the effectiveness of the devised architecture to enable spectral compatibility while delivering high-quality ISAR images as well as additional RF activities.

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40 Engineering, 46 Information and Computing Sciences, 4006 Communications Engineering, 4603 Computer Vision and Multimedia Computation, 4605 Data Management and Data Science, 4013 Geomatic Engineering, Cognitive radar, compressed sensing (CS), drone imaging, inverse synthetic aperture radar (ISAR), ISAC, missing data, spectral compatibility

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Attribution 4.0 International

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The work of Massimo Rosamilia, Augusto Aubry, and Antonio De Maio was supported in part by the European Union under the Italian National Recovery and Resilience Plan (NRRP) of NextGenerationEU, partnership on “Telecommunications of the Future” (PE00000001-program “RESTART”)

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