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A novel refocusing distance measurement method using super-resolved light field images

机译:一种超分辨光场图像的重新聚焦测距方法

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This paper proposes a novel distance measurement method using superresolved light-field images. We first superresolve the light field using the hybrid cross-resolution input based on PatchMatch and convolutional neural network method, which combines and takes advantage of these two methods. In this way, we can explore the similarity between images and deal with challenging scenes effectively. The scaling factor is up to eight times, which is much larger than the ordinary superresolution scaling factor, and our superresolution method can also maintain a satisfactory accuracy. With the traditional idea of focus ranging, the light-field 3D measurement method is established. A proper definition evaluation function suitable for light-field data is selected to evaluate the imaging quality, and the triangle barycenter interpolation method is proposed to measure 3D scenes. Experimental results demonstrate that the proposed method not only improves the quality of the reconstructed high-resolution light field but also has the ability of the distance measurement. It indicates that the light-field imaging is a promising 3D measurement technique.
机译:本文提出了一种使用超分辨光场图像的新型测距方法。我们首先使用基于PatchMatch和卷积神经网络方法的混合交叉分辨率输入来超分辨光场,该方法结合并利用了这两种方法。这样,我们可以探索图像之间的相似性,并有效地处理具有挑战性的场景。比例因子高达八倍,比普通的超分辨率比例因子大得多,我们的超分辨率方法也可以保持令人满意的精度。利用传统的聚焦测距思想,建立了光场3D测量方法。选择适合光场数据的适当清晰度评估函数来评估成像质量,并提出了三角重心插值方法来测量3D场景。实验结果表明,该方法不仅提高了重建高分辨率光场的质量,而且具有测距能力。这表明光场成像是一种有前途的3D测量技术。

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