去模糊
计算机科学
分辨率(逻辑)
计算机视觉
镜头(地质)
人工智能
球差
图像分辨率
忠诚
光学
计算复杂性理论
平面的
物理
图像处理
图像(数学)
算法
图像复原
计算机图形学(图像)
电信
作者
Oliver Cossairt,Daniel Miau,Shree K. Nayar
标识
DOI:10.1364/josaa.28.002540
摘要
The resolution of a camera system determines the fidelity of visual features in captured images. Higher resolution implies greater fidelity and, thus, greater accuracy when performing automated vision tasks, such as object detection, recognition, and tracking. However, the resolution of any camera is fundamentally limited by geometric aberrations. In the past, it has generally been accepted that the resolution of lenses with geometric aberrations cannot be increased beyond a certain threshold. We derive an analytic scaling law showing that, for lenses with spherical aberrations, resolution can be increased beyond the aberration limit by applying a postcapture deblurring step. We then show that resolution can be further increased when image priors are introduced. Based on our analysis, we advocate for computational camera designs consisting of a spherical lens shared by several small planar sensors. We show example images captured with a proof-of-concept gigapixel camera, demonstrating that high resolution can be achieved with a compact form factor and low complexity. We conclude with an analysis on the trade-off between performance and complexity for computational imaging systems with spherical lenses.
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