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Distortion is not noise: on the limits of the Kappa model for monostatic ISAC

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Dong, H.

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eng

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Abstract

Hardware impairments affect sensing and communication asymmetrically in monostatic integrated sensing and communication (ISAC): the transmitter can monitor its own distorted waveform for sensing, whereas the remote communication receiver cannot. The aggregate k distortion model treats impairments as unknown noise, which is appropriate for communication but pessimistic for monostatic sensing. We derive power-amplifier-aware sensing Cramér–Rao bounds (CRBs) and a phase-noise-aware CRB that reveals an irreducible velocity-error floor, and quantify when k-based bounds overestimate sensing degradation. Simulations validate the analysis and show robustness to practical digital pre-distortion (DPD) template errors (less than 1 dB overhead at −25 dB normalized mean square error (NMSE)).

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IEEE

Subject

Computer science, information systems, Engineering, electrical and electronic, Telecommunications

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IEEE Wireless Communications Letters

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DOI

10.1109/lwc.2026.3697114

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