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Relating transverse ray error and light fields in plenoptic camera images

机译:有关全光相机图像中的横向射线误差和光场

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Plenoptic cameras have emerged in recent years as a technology for capturing light field data in a single snapshot. A conventional digital camera can be modified with the addition of a lenslet array to create a plenoptic camera. The camera image is focused onto the lenslet array. The lenslet array is placed over the camera sensor such that each lenslet forms an image of the exit pupil onto the sensor. The resultant image is an array of circular exit pupil images, each corresponding to the overlying lenslet. The position of the lenslet encodes the spatial information of the scene, whereas as the sensor pixels encode the angular information for light incident on the lenslet. The 4D light field is therefore described by the 2D spatial information and 2D angular information captured by the plenoptic camera. In aberration theory, the transverse ray error relates the pupil coordinates of a given ray to its deviation from the ideal image point in the image plane and is consequently a 4D function as well. We demonstrate a technique for modifying the traditional transverse ray error equations to recover the 4D light field of a general scene. In the case of a well corrected optical system, this light field is easily related to the depth of various objects in the scene. Finally, the effects of sampling with both the lenslet array and the camera sensor on the 4D light field data are analyzed to illustrate the limitations of such systems.
机译:近年来,全光照相机作为一种用于在单个快照中捕获光场数据的技术而出现。可以通过添加小透镜阵列来修改常规的数码相机以创建全光相机。相机图像聚焦在小透镜阵列上。小透镜阵列被放置在照相机传感器上方,使得每个小透镜在传感器上形成出射光瞳的图像。所得图像是圆形出射光瞳图像的阵列,每个都对应于上面的小透镜。小透镜的位置对场景的空间信息进行编码,而传感器像素对入射在小透镜上的光的角度信息进行编码。因此,由全光摄像机捕获的2D空间信息和2D角度信息描述了4D光场。在像差理论中,横向光线误差将给定光线的光瞳坐标与它与像平面中理想像点的偏离相关联,因此也是4D函数。我们演示了一种修改传统横向射线误差方程以恢复一般场景的4D光场的技术。在光学系统校正良好的情况下,此光场很容易与场景中各种物体的深度有关。最后,分析了用小透镜阵列和相机传感器采样对4D光场数据的影响,以说明此类系统的局限性。

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