Correlation-informed ordered dictionary learning for imaging in complex media

Author:

Moscoso Miguel1ORCID,Novikov Alexei2,Papanicolaou George3,Tsogka Chrysoula4ORCID

Affiliation:

1. Department of Mathematics, Universidad Carlos III de Madrid, Leganes, Madrid 28911, Spain

2. Department of Mathematics, Pennsylvania State University, University Park, PA 16802

3. Department of Mathematics, Stanford University, Stanford, CA 94305

4. Department of Applied Mathematics, University of California, Merced, CA 95343

Abstract

We propose a method for imaging in scattering media when large and diverse datasets are available. It has two steps. Using a dictionary learning algorithm the first step estimates the true Green’s function vectors as columns in an unordered sensing matrix. The array data comes from many sparse sets of sources whose location and strength are not known to us. In the second step, the columns of the estimated sensing matrix are ordered for imaging using the multidimensional scaling algorithm with connectivity information derived from cross-correlations of its columns, as in time reversal. For these two steps to work together, we need data from large arrays of receivers so the columns of the sensing matrix are incoherent for the first step, as well as from sub-arrays so that they are coherent enough to obtain connectivity needed in the second step. Through simulation experiments, we show that the proposed method is able to provide images in complex media whose resolution is that of a homogeneous medium.

Funder

Spanish AIE

AFOSR

Publisher

Proceedings of the National Academy of Sciences

Reference27 articles.

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