Robust phase retrieval algorithm for time-frequency structured measurements

Publication date

2019-04-16

Authors

Pfander, Götz E.
Salanevich, PalinaORCID 0000-0003-2436-9331ISNI 0000000507309534

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Document Type

Article
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Abstract

We address the problem of signal reconstruction from intensity measurements with respect to a measurement frame. This nonconvex inverse problem is known as phase retrieval. The case considered in this paper concerns phaseless measurements taken with respect to a Gabor frame. It arises naturally in many practical applications, such as diffraction imaging and speech recognition. We present a reconstruction algorithm that uses a nearly optimal number of phaseless time-frequency structured measurements and discuss its robustness in the case when the measurements are corrupted by noise. We show how geometric properties of the measurement frame are related to the robustness of the phaseless reconstruction.

Keywords

Angular synchronization, Expander graphs, Gabor frames, Order statistics of frame coefficients, Phase retrieval, Spectral clustering, Taverne, General Mathematics, Applied Mathematics

Citation

Pfander, G E & Salanevich, P 2019, 'Robust phase retrieval algorithm for time-frequency structured measurements', SIAM Journal on Imaging Sciences, vol. 12, no. 2, pp. 736-761. https://doi.org/10.1137/18M1205522