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Multiplicative-Regularized FFT Twofold Subspace-Based Optimization Method for Inverse Scattering Problems

delete2015-02-01
delete54
PRE
AI
K
Kuiwen Xu *
Y
Yu Zhong
R
Rencheng Song
X
Xudong Chen
冉立新 (Lixin Ran)
DOI:10.1109/TGRS.2014.2329032delete
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Abstract

Abstract

En 中文
In this paper, we combine two techniques together, i.e., the fast Fourier transform-twofold subspace-based optimization method (FFT-TSOM) and multiplicative regularization (MR) to solve inverse scattering problems. When applying MR to the objective function in the FFT-TSOM, the new method is referred to as MR-FFT-TSOM. In MR-FFT-TSOM, a new stable and effective strategy of regularization has been proposed. MR-FFT-TSOM inherits not only the advantages of the FFT-TSOM, i.e., lower computational complexity than the TSOM, better stability of the inversion procedure, and better robustness against noise compared with the SOM, but also the edge-preserving ability from the MR. In addition, a more relaxed condition of choosing the number of current bases being used in the optimization can be obtained compared with the FFT-TSOM. Particularly, MR-FFT-TSOM has even better robustness against noise compared with the FFT-TSOM and multiplicative regularized contrast source inversion (MR-CSI). Numerical simulations including both inversion of synthetic data and experimental data from the Fresnel data set validate the efficacy of the proposed algorithm.
Keywords:
Fast Fourier transform-twofold subspace-based optimization method (FFT-TSOM)
inverse scattering
multiplicative regularization (MR)
optimization
subspace
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Journal

IEEE Transactions on Geoscience and Remote Sensing cover
IEEE Transactions on Geoscience and Remote Sensing
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8.6
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a*star - institute of high performance computing (ihpc)
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agency for science technology & research (a*star)
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zhejiang university
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