An Invitation to Hypercomplex Phase Retrieval: Theory and Applications

Fuente: arXiv
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Autori principali: Jacome, Roman, Mishra, Kumar Vijay, Sadler, Brian M., Arguello, Henry
Natura: Preprint
Pubblicazione: 2023
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author Jacome, Roman
Mishra, Kumar Vijay
Sadler, Brian M.
Arguello, Henry
author_facet Jacome, Roman
Mishra, Kumar Vijay
Sadler, Brian M.
Arguello, Henry
contents Hypercomplex signal processing (HSP) provides state-of-the-art tools to handle multidimensional signals by harnessing intrinsic correlation of the signal dimensions through Clifford algebra. Recently, the hypercomplex representation of the phase retrieval (PR) problem, wherein a complex-valued signal is estimated through its intensity-only projections, has attracted significant interest. The hypercomplex PR (HPR) arises in many optical imaging and computational sensing applications that usually comprise quaternion and octonion-valued signals. Analogous to the traditional PR, measurements in HPR may involve complex, hypercomplex, Fourier, and other sensing matrices. This set of problems opens opportunities for developing novel HSP tools and algorithms. This article provides a synopsis of the emerging areas and applications of HPR with a focus on optical imaging.
format Preprint
id arxiv_https___arxiv_org_abs_2310_17660
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle An Invitation to Hypercomplex Phase Retrieval: Theory and Applications
Jacome, Roman
Mishra, Kumar Vijay
Sadler, Brian M.
Arguello, Henry
Signal Processing
Information Theory
Image and Video Processing
Hypercomplex signal processing (HSP) provides state-of-the-art tools to handle multidimensional signals by harnessing intrinsic correlation of the signal dimensions through Clifford algebra. Recently, the hypercomplex representation of the phase retrieval (PR) problem, wherein a complex-valued signal is estimated through its intensity-only projections, has attracted significant interest. The hypercomplex PR (HPR) arises in many optical imaging and computational sensing applications that usually comprise quaternion and octonion-valued signals. Analogous to the traditional PR, measurements in HPR may involve complex, hypercomplex, Fourier, and other sensing matrices. This set of problems opens opportunities for developing novel HSP tools and algorithms. This article provides a synopsis of the emerging areas and applications of HPR with a focus on optical imaging.
title An Invitation to Hypercomplex Phase Retrieval: Theory and Applications
topic Signal Processing
Information Theory
Image and Video Processing
url https://arxiv.org/abs/2310.17660