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Speckle denoising by variant nonlocal means methods

机译:通过变体非局部的斑点去噪方法

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摘要

This study aims to demonstrate the performances of nonlocal means (NLM) and their variant denoising methods, mainly focusing on NLM-shaped adaptive patches and several NLM-reprojection schemes for speckle noise reduction in amplitude and phase images of the digital coherent imaging systems. In the digital coherent imaging systems such as digital speckle pattern interferometry, digital holographic interferometry, etc., the image quality is severely degraded by additive uncorrelated speckle noise, due to the coherent nature of the light source, and therefore limits the development of several applications of these imaging systems in many fields. NLM and its variant denoising methods are employed to denoise the intensity/phase images obtained from these imaging systems, and their effectiveness is evaluated by considering various parameters. The performance comparison of these methods with other existing speckle denoising methods is also presented. The performance of these methods for speckle noise reduction is quantified on the basis of two criteria matrices, namely, the peak-to-signal noise ratio and the image quality index. Based on these criteria matrices, it is observed that these denoising methods have the ability to improve the intensity and phase images favorably in comparison to other speckle denoising techniques, and these methods are more effective and feasible in speckle-noise reduction. (C) 2019 Optical Society of America
机译:本研究旨在展示非局部手段(NLM)的性能及其变体去噪方法,主要关注NLM形的自适应贴片和用于散噪噪声降低的NLM噪声减少的几个NLM作用输注方案。在诸如数字散斑图案干涉测定的数字相干成像系统中,数字全息干涉测量等,由于光源的相干性质,图像质量受到附加的不相关的散斑噪声严重降低,因此限制了几种应用的发展这些成像系统在许多领域。使用NLM及其变型去噪方法来代替从这些成像系统获得的强度/相位图像,并且通过考虑各种参数来评估它们的有效性。还提出了这些方法与其他现有斑点去噪方法的性能比较。这些方法对于散斑噪声降低方法的性能是基于两个标准矩阵量化的,即,峰值到信号噪声比和图像质量指数。基于这些标准矩阵,观察到这些去噪方法的能力与其他斑点去噪技术相比,这些去噪能力有利地改善强度和相位图像,并且这些方法在散斑噪声降低方面更有效和可行。 (c)2019年光学学会

著录项

  • 来源
    《Applied optics》 |2019年第26期|共11页
  • 作者单位

    Chouaib Doukkali Univ Dept Phys Measurement &

    Control Instrumentat Lab IMC El Jadida Morocco;

    Kobe Univ Grad Sch Syst Informat Dept Syst Sci Nada Ku Rokkodai 1-1 Kobe Hyogo 6578501 Japan;

    Chouaib Doukkali Univ Dept Phys Measurement &

    Control Instrumentat Lab IMC El Jadida Morocco;

    Ctr Invest Opt AC Guanajuato 37160 Mexico;

    Kobe Univ Grad Sch Syst Informat Dept Syst Sci Nada Ku Rokkodai 1-1 Kobe Hyogo 6578501 Japan;

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  • 正文语种 eng
  • 中图分类 应用;
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