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Improving the signal-to-noise ratio of single-pixel imaging using digital microscanning

  • Ming Jie Sun
  • , Matthew P. Edgar
  • , David B. Phillips
  • , Graham M. Gibson
  • , Miles J. Padgett
  • University of Glasgow

科研成果: 期刊稿件文章同行评审

摘要

Single-pixel cameras provide a means to perform imaging at wavelengths where pixelated detector arrays are expensive or limited. The image is reconstructed from measurements of the correlation between the scene and a series of masks. Although there has been much research in the field in recent years, the fact that the signal-to-noise ratio (SNR) scales poorly with increasing resolution has been one of the main limitations prohibiting the uptake of such systems. Microscanning is a technique that provides a final higher resolution image by combining multiple images of a lower resolution. Each of these low resolution images is subject to a sub-pixel sized lateral displacement. In this work we apply a digital microscanning approach to an infrared single-pixel camera. Our approach requires no additional hardware, but is achieved simply by using a modified set of masks. Compared to the conventional Hadamard based single-pixel imaging scheme, our proposed framework improves the SNR of reconstructed images by ∼50 % for the same acquisition time. In addition, this strategy also provides access to a stream of low-resolution 'preview' images throughout each high-resolution acquisition.

源语言英语
页(从-至)10476-10485
页数10
期刊Optics Express
24
10
DOI
出版状态已出版 - 16 5月 2016

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