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Denoising imaging polarimetry by adapted BM3D method

机译:通过适应BM3D方法去噪成像偏振偏振物

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摘要

In addition to the visual information contained in intensity and color, imaging polarimetry allows visual information to be extracted from the polarization of light. However, a major challenge of imaging polarimetry is image degradation due to noise. This paper investigates the mitigation of noise through denoising algorithms and compares existing denoising algorithms with a new method, based on BM3D (Block Matching 3D). This algorithm, Polarization-BM3D (PBM3D), gives visual quality superior to the state of the art across all images and noise standard deviations tested. We show that denoising polarization images using PBM3D allows the degree of polarization to be more accurately calculated by comparing it with spectral polarimetry measurements. Published by The Optical Society under the terms of the Creative Commons Attribution 4.0 License.
机译:除了强度和颜色中包含的视觉信息之外,成像偏振器允许从光的偏振中提取视觉信息。 然而,成像偏振基的主要挑战是由于噪声引起的图像劣化。 本文通过去噪算法来调查噪声的缓解,并基于BM3D(块匹配3D)与一种新方法的现有去噪算法。 该算法,极化-BM3D(PBM3D),对所有图像和噪声标准偏差的最先进的视觉质量提供了优于所测试的噪声标准偏差。 我们示出了使用PBM3D的去噪偏振图像允许通过与光谱偏振测量测量来更准确地计算偏振程度。 光学社会根据创意公约归因于4.0许可的条款发布。

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