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An effective rectification method for lenselet-based plenoptic cameras

机译:一种有效的透镜压孔电镀摄像机的整流方法

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The Lenselet-Based Plenoptic has recently drawn a lot of attention in the field of computational photography. The additional information inherent in light field allows a wide range of applications, but some preliminary processing of the raw image is necessary before further operations. In this paper, an effective method is presented for the rotation rectification of the raw image. The rotation is caused by imperfectly position of micro-lens array relative to the sensor plane in commercially available Lytro plenoptic cameras. The key to our method is locating the center of each microlens image, which is projected by a micro-lens. Because of vignetting, the pixel values at centers of the micro-lens image are higher than those at the peripheries. A mask is applied to probe the micro-lens image to locate the center area by finding the local maximum response. The error of the center coordinate estimate is corrected and the angle of rotation is computed via a subsequent line fitting. The algorithm is performed on two images captured by different Lytro cameras. The angles of rotation are -0.3600° and -0.0621° respectively and the rectified raw image is useful and reliable for further operations, such as extraction of the sub-aperture images. The experimental results demonstrate that our method is efficient and accurate.
机译:基于透镜的玻璃光泽最近在计算摄影领域中汲取了很多关注。灯场固有的附加信息允许广泛的应用,但是在进一步操作之前需要对原始图像的一些初步处理。本文提出了一种有效的方法,用于原始图像的旋转整流。旋转是由在市售的Lytro Blenoptic摄像机中的微透镜阵列相对于传感器平面的不完全位置引起的。我们方法的关键是定位每个微透镜图像的中心,由微透镜投射。由于渐晕,微透镜图像的中心的像素值高于周边处的像素值。应用掩模来探测微透镜图像以通过找到局部最大响应来定位中心区域。校正中心坐标估计的误差并通过随后的线拟合来计算旋转角度。该算法在由不同的Lytro摄像机捕获的两个图像上执行。旋转的角度分别为-0.3600°和-0.0621°,并且整流的原始图像对于进一步的操作是有用的并且可靠,例如副孔径图像的提取。实验结果表明,我们的方法是有效准确的。

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