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Speckle noise reduction in digital speckle pattern interferometric fringes by nonlocal means and its related adaptive kernel-based methods

机译:数字散斑图案的斑块降低通过非局部手段和其相关的自适应内核方法干涉流动系数

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摘要

Digital speckle pattern interferometry (DSPI) is widely used in many scientific and industrial applications. Besides its several advantages, one of the basic problems encountered in DSPI is the undesired speckle noise existing in the fringe pattern. In this paper, we demonstrate the performance of nonlocal means (NLM) and its related adaptive kernel-based filtering methods for speckle noise reduction in DSPI fringes. The NLM filter and its related kernel-based filters such as NLM-average, NLM-local polynomial regression, and NLM-shape adaptive patches are implemented first on simulated DSPI fringes, and their performances are quantified on the basis of peak signal-to-noise ratio (PSNR), mean square error (MSE), and quality index (Q). Further, their effectiveness and abilities in reducing speckle noise are compared with other speckle denoising methods. These filtering methods are then employed on experimental DSPI fringes. The obtained results reveal that these filtering methods have the ability to improve the PSNR and Q of the DSPI fringes and provide better visual and quantitative results. It is also observed that the proposed filtering methods preserve the edge information of the DSPI fringes, which is evaluated on the basis of the edge preservation index of the resultant filtered images. (C) 2018 Optical Society of America.
机译:数字斑点图案干涉测量法(DSPI)广泛应用于许多科学和工业应用。除了其几个优点,DSPI中遇到的基本问题之一是边缘图案中存在的不期望的散斑噪声。在本文中,我们展示了非局部手段(NLM)的性能及其相关的基于自适应内核的滤波方法,用于DSPI条纹的散斑降噪。 NLM滤波器及其相关的基于内核的滤波器,例如NLM平均值,NLM-inalymoMial复回和NLM形自适应贴片,并在模拟的DSPI条纹上实现,并且它们的性能在峰值信号的基础上量化噪声比(PSNR),均方误差(MSE)和质量指数(Q)。此外,与其他斑点去噪方法进行比较了减少散斑噪声的有效性和能力。然后在实验DSPI条纹上使用这些过滤方法。所得结果表明,这些过滤方法具有改善DSPI条纹的PSNR和Q的能力,并提供更好的视觉和定量结果。还观察到,所提出的滤波方法保留DSPI条纹的边缘信息,这是基于所得滤波图像的边缘保存索引来评估的。 (c)2018年光学学会。

著录项

  • 来源
    《Applied optics》 |2018年第27期|共10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;

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  • 正文语种 eng
  • 中图分类 应用;
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