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March 18, 2022Frontiers in Physics108 citationsOpen Access

Polarimetric Imaging Through Scattering Media: A Review

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XLXiaobo LiYHYilin HanHWHongyuan Wang

Key Points

  • This review aims to summarize recent developments in polarimetric imaging techniques to enhance image quality through scattering media.
  • Introduced physical degradation models in scattering media.
  • Reviewed different polarimetric imaging systems including polarization difference, Stokes vector, and Mueller matrix.
  • Discussed deep learning-based systems for improved imaging.
  • Polarimetric methods were shown to estimate backscattering intensity and media transmittance effectively.
  • Techniques successfully separated target signals from undesired signals for higher-quality images.
  • Guidelines for model selection and future research directions in polarimetric imaging are provided.

Abstract

Imaging in scattering media has been a challenging and important subject in optical science. In scattering media, the image quality is often severely degraded by the scattering and absorption effects owing to the small particles and the resulting nonuniform distribution of the intensity or polarization properties. This study reviews the recent development in polarimetric imaging techniques that address these challenges. Specifically, based on the polarization properties of the backscattering light, polarimetric methods can estimate the intensity level of the backscattering and the transmittance of the media. They can also separate the target signal from the undesired ones to achieve high-quality imaging. In addition, the different designs of the polarimetric imaging systems offer additional metrics, for example, the degree/angle of polarization, to recover images with high fidelity. We first introduce the physical degradation models in scattering media. Secondly, we apply the models in different polarimetric imaging systems, such as polarization difference, Stokes vector, Mueller matrix, and deep learning-based systems. Lastly, we provide a model selection guideline and future research directions in polarimetric imaging.

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Cite This Study

Li et al. (2022) studied this question.

synapsesocial.com/papers/6970e7ef2d1b404414ca7989https://doi.org/10.3389/fphy.2022.815296
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