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  4. Equidistant Sub-Nyquist 3-D Microwave Imaging Using Rational Thin-Plate Spline Interpolation
 
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Equidistant Sub-Nyquist 3-D Microwave Imaging Using Rational Thin-Plate Spline Interpolation

Journal
17th European Conference on Antennas and Propagation, EuCAP 2023
ISBN
9788831299077
Date Issued
2023-01-01
Author(s)
Lin, Ting Yang
Yang, Hsin Jung
SHIH-YUAN CHEN  
DOI
10.23919/EuCAP57121.2023.10133440
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/633634
URL
https://api.elsevier.com/content/abstract/scopus_id/85162197439
Abstract
High sampling rates required by the Nyquist sampling theorem impose limitations on both rapid data acquisition and measurement system design in planar microwave holographic imaging, rendering sub-Nyquist sampling a desirable feature. Compared to the incoherence requirement in compressed-sensing-based methods, equidistant sampling schemes are favorable for a more general and intuitive system design. In this paper, a 3D microwave imaging scheme using equidistant sub-Nyquist samples is proposed. The method is based on the open-circuit voltage formulation in [1], but the reconstruction with sub-Nyquist data is done using the rational thin-plate spline (RTPS) interpolation. Determination of the interpolation function involves finding an eigenvector with the smallest eigenvalue to a generalized eigenproblem. A remedy procedure is also developed to address the singularities or outliers produced by the ill-conditioning in such a problem. The effectiveness and robustness of the developed method are verified with numerical experiments in X-band, showing significant improvements in image quality.
Subjects
microwave imaging | rational thin-plate spline (RTPS) interpolation | sub-Nyquist
Type
conference paper

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