Parametrized Stacked Intelligent Metasurfaces for Bistatic Integrated Sensing and Communications

Fuente: arXiv
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Hauptverfasser: Ranasinghe, Kuranage Roche Rayan, Sandoval, Iván Alexander Morales, de Abreu, Giuseppe Thadeu Freitas, Alexandropoulos, George C.
Format: Preprint
Veröffentlicht: 2025
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author Ranasinghe, Kuranage Roche Rayan
Sandoval, Iván Alexander Morales
de Abreu, Giuseppe Thadeu Freitas
Alexandropoulos, George C.
author_facet Ranasinghe, Kuranage Roche Rayan
Sandoval, Iván Alexander Morales
de Abreu, Giuseppe Thadeu Freitas
Alexandropoulos, George C.
contents We consider stacked intelligent metasurfaces (SIMs) as a tool to improve the performance of bistatic integrated sensing and communications (ISAC) schemes. To that end, we optimize the SIMs and design a radar parameter estimation (RPE) scheme aimed at enhancing radar sensing capabilities as well as communication performance under ISAC-enabling waveforms known to perform well in doubly-dispersive (DD) channels. The SIM optimization is done via a min-max problem formulation solved via steepest ascent with closed-form gradients, while the RPE is carried out via a compressed sensing-based probabilistic data association (PDA) algorithm. Our numerical results indicate that the design of waveforms suitable to mitigating the effects of DD channels is significantly impacted by the emerging SIM technology.
format Preprint
id arxiv_https___arxiv_org_abs_2504_20661
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Parametrized Stacked Intelligent Metasurfaces for Bistatic Integrated Sensing and Communications
Ranasinghe, Kuranage Roche Rayan
Sandoval, Iván Alexander Morales
de Abreu, Giuseppe Thadeu Freitas
Alexandropoulos, George C.
Signal Processing
We consider stacked intelligent metasurfaces (SIMs) as a tool to improve the performance of bistatic integrated sensing and communications (ISAC) schemes. To that end, we optimize the SIMs and design a radar parameter estimation (RPE) scheme aimed at enhancing radar sensing capabilities as well as communication performance under ISAC-enabling waveforms known to perform well in doubly-dispersive (DD) channels. The SIM optimization is done via a min-max problem formulation solved via steepest ascent with closed-form gradients, while the RPE is carried out via a compressed sensing-based probabilistic data association (PDA) algorithm. Our numerical results indicate that the design of waveforms suitable to mitigating the effects of DD channels is significantly impacted by the emerging SIM technology.
title Parametrized Stacked Intelligent Metasurfaces for Bistatic Integrated Sensing and Communications
topic Signal Processing
url https://arxiv.org/abs/2504.20661