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Anti-motion blur single-pixel imaging with calibrated radon spectrum
Optics Letters
|June 16, 2022
Summary
This study introduces a new single-pixel imaging (SPI) method to reduce motion blur in images of dynamic objects. The technique uses a calibrated radon spectrum to restore high-quality images without prior knowledge, enabling fast object tracking.
Area of Science:
- Computational Imaging
- Optical Sensing
Background:
- Single-pixel imaging (SPI) captures static object images by measuring light intensities.
- Dynamic object imaging with SPI suffers from significant motion blur.
Purpose of the Study:
- To propose a novel SPI scheme to mitigate motion blur in dynamic object imaging.
- To enable high-quality image restoration and object tracking for fast-moving subjects.
Main Methods:
- A new SPI scheme is developed leveraging a calibrated radon spectrum.
- The calibrated spectrum is obtained by translating one-dimensional projection functions (1DPFs).
Main Results:
- The proposed method effectively reduces motion blur in restored images.
- High-quality images of fast-moving objects were successfully restored without prior knowledge.
- The scheme demonstrated capability for fast object tracking.
Conclusions:
- The novel SPI scheme significantly alleviates motion blur in dynamic imaging.
- This approach offers a robust solution for imaging fast-moving objects.
- The technique is also applicable for efficient object tracking.

