首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Fringe Phase-Shifting Field Based Fuzzy Quotient Space-Oriented Partial Differential Equations Filtering Method for Gaussian Noise-Induced Phase Error
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Fringe Phase-Shifting Field Based Fuzzy Quotient Space-Oriented Partial Differential Equations Filtering Method for Gaussian Noise-Induced Phase Error

机译:基于边缘相移场的高斯噪声相位误差的模糊商空间偏微分方程滤波方法

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摘要

Traditional filtering methods only focused on improving the peak signal-to-noise ratio of the single fringe pattern, which ignore the filtering effect on phase extraction. Fringe phase-shifting field based fuzzy quotient space-oriented partial differential equations filtering method is proposed to reduce the phase error caused by Gaussian noise while filtering. First, the phase error distribution that is caused by Gaussian noise is analyzed. Furthermore, by introducing the fringe phase-shifting field and the theory of fuzzy quotient space, the modified filtering direction can be adaptively obtained, which transforms the traditional single image filtering into multi-image filtering. Finally, the improved fourth-order oriented partial differential equations with fidelity item filtering method is established. Experiments demonstrated that the proposed method achieves a higher signal-to-noise ratio and lower phase error caused by noise, while also retaining more edge details.
机译:传统的滤波方法只专注于提高单个条纹图案的峰值信噪比,而忽略了对相位提取的滤波效果。提出了一种基于边缘相移场的模糊商空间偏微分方程滤波方法,以减少滤波时高斯噪声引起的相位误差。首先,分析由高斯噪声引起的相位误差分布。此外,通过引入边缘相移场和模糊商空间理论,可以自适应地获得修改后的滤波方向,从而将传统的单幅图像滤波转换为多幅图像滤波。最后,建立了采用保真项滤波方法的改进的四阶定向偏微分方程。实验表明,该方法具有较高的信噪比和较低的噪声引起的相位误差,同时还保留了更多的边缘细节。

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