Efficient ordering of the Hadamard basis for single pixel imaging

Author:

López-García Lourdes1,Cruz-Santos William2,García-Arellano Anmi3,Filio-Aguilar Pedro1ORCID,Cisneros-Martínez José A.4,Ramos-García Rubén4

Affiliation:

1. CU-UAEM Valle de Chalco

2. Helios Imaging Systems S.C.

3. Universidad Politécnica de Bacalar

4. Instituto Nacional de Astrofísica

Abstract

Single-pixel imaging is a technique that can reconstruct an image of a scene by projecting a series of spatial patterns on an object and capturing the reflected light by a single photodetector. Since the introduction of the compressed sensing method, it has been possible to use random spatial patterns and reduce its number below the Nyquist-Shannon limit to form a good quality image but with lower spatial resolution. On the other hand, Hadamard pattern based methods can reconstruct large images by increasing the acquisition measurement time. Here, we propose an efficient strategy to order the Hadamard basis patterns from higher to lower relevance, and then to reconstruct an image at very low sampling rates of at least 8%. Our proposal is based on the construction of generalized basis vectors in two dimensions and then ordering in zigzag fashion. Simulation and experimental results show that the sampling rate, image quality and computational complexity of our method are competitive to the state of the art methods.

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

Cited by 16 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Anti-scattering medium computational ghost imaging with modified Hadamard patterns;Optics Communications;2024-02

2. Compressive Sensing in Image/Video Compression: Sampling, Coding, Reconstruction, and Codec Optimization;Information;2024-01-26

3. Super Sub-Nyquist Single-Pixel Terahertz Imaging Using Hadamard Basis;Journal of Applied Spectroscopy;2023-11

4. Multiple description coding ghost imaging;Frontiers in Physics;2023-09-27

5. Frequency-multiplexing for imaging at submillimeter waves;2023 48th International Conference on Infrared, Millimeter, and Terahertz Waves (IRMMW-THz);2023-09-17

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