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This paper proposes a novel approach to 3-D microwave imaging using dynamic metasurface antennas in a multistatic configuration. By introducing a panel-to-panel model and a preprocessing technique, raw measurements are converted into the space-frequency domain for efficient data acquisition and reconstruction. Adapting the range migration algorithm in this work enables fast Fourier-based image reconstruction. Simulation results showcase the effectiveness of the proposed method, highlighting its potential for real-world applications.
(2024) Published by SPIE. Downloading of the abstract is permitted for personal use only.
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Amir Masoud Molaei, Thomas Fromenteze, Vasiliki Skouroliakou, Shaoqing Hu, Vincent Fusco, Okan Yurduseven, "Multistatic 3-D microwave imaging with dynamic metasurface antennas: a Fourier-based approach," Proc. SPIE 13203, Sensors and Communication Technologies in the 1 GHz to 10 THz Band, 132030L (15 November 2024); https://doi.org/10.1117/12.3033357