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Super-Resolution Phase Retrieval Network for Single-Pattern Structured Light 3D Imaging

delete2023-01-01
delete11
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OA
AI
J
Jianwen Song
刘凯 cover
刘凯 (Kai Liu)
A
Arcot Sowmya
C
Changming Sun *
DOI:10.1109/TIP.2022.3230245delete
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Abstract

Abstract

En 中文
Structured light 3D imaging is often used for obtaining accurate 3D information via phase retrieval. Single-pattern structured light 3D imaging is much faster than multi-pattern versions. Current phase retrieval methods for single-pattern structured light 3D imaging are however not accurate enough. Besides, the projector resolution in a structured light 3D imaging system is expensive to improve due to hardware costs. To address the issues of low accuracy and low resolution of single-pattern structured light 3D imaging, this work proposes a super-resolution phase retrieval network (SRPRNet). Specifically, a phase-shifting module is proposed to extract multi-scale features with different phase shifts, and a refinement and super-resolution module is proposed to obtain refined and super-resolution phase components. After phase demodulation and unwrapping, high-resolution absolute phase is obtained. A sine shifting loss and a cosine shifting loss are also introduced to form the regularization term of the loss function. As far as can be ascertained, the proposed SRPRNet is the first network for super-resolution phase retrieval by using a single pattern, and it can also be used for standard-resolution phase retrieval. Experimental results on three datasets show that SRPRNet achieves state-of-the-art performance on 1x , 2x , and 4x super-resolution phase retrieval tasks.
Keywords:
Three-dimensional displays
Imaging
Superresolution
Periodic structures
Deep learning
Decoding
Feature extraction
Structured light
super-resolution
single-pattern
phase retrieval
phase-shifting

Journal

IEEE Transactions on Image Processing cover
IEEE Transactions on Image Processing
IF:
13.7
Papers:
1.0W
Citations:
8.4W

Organization

S
sichuan university
Scholars:
11.9W
Papers: 7.7W
Citations: 100