Sarnoff Corporation, W356, 201 Washington Road, Princeton, NJ 08540, USA.
IEEE Trans Pattern Anal Mach Intell. 2011 Jan;33(1):58-71. doi: 10.1109/TPAMI.2010.66.
The range of scene depths that appear focused in an image is known as the depth of field (DOF). Conventional cameras are limited by a fundamental trade-off between depth of field and signal-to-noise ratio (SNR). For a dark scene, the aperture of the lens must be opened up to maintain SNR, which causes the DOF to reduce. Also, today's cameras have DOFs that correspond to a single slab that is perpendicular to the optical axis. In this paper, we present an imaging system that enables one to control the DOF in new and powerful ways. Our approach is to vary the position and/or orientation of the image detector during the integration time of a single photograph. Even when the detector motion is very small (tens of microns), a large range of scene depths (several meters) is captured, both in and out of focus. Our prototype camera uses a micro-actuator to translate the detector along the optical axis during image integration. Using this device, we demonstrate four applications of flexible DOF. First, we describe extended DOF where a large depth range is captured with a very wide aperture (low noise) but with nearly depth-independent defocus blur. Deconvolving a captured image with a single blur kernel gives an image with extended DOF and high SNR. Next, we show the capture of images with discontinuous DOFs. For instance, near and far objects can be imaged with sharpness, while objects in between are severely blurred. Third, we show that our camera can capture images with tilted DOFs (Scheimpflug imaging) without tilting the image detector. Finally, we demonstrate how our camera can be used to realize nonplanar DOFs. We believe flexible DOF imaging can open a new creative dimension in photography and lead to new capabilities in scientific imaging, vision, and graphics.
在图像中聚焦的场景深度范围称为景深 (DOF)。传统相机受到景深和信噪比 (SNR) 之间基本权衡的限制。对于暗场景,必须打开镜头的光圈以保持 SNR,这会导致景深减小。此外,当今的相机具有与垂直于光轴的单个平板相对应的景深。在本文中,我们提出了一种成像系统,可通过新的强大方法来控制景深。我们的方法是在单个照片的积分时间内改变图像检测器的位置和/或方向。即使检测器的运动非常小(几十微米),也可以捕获大范围内的场景深度(几米),包括聚焦和失焦。我们的原型相机使用微致动器在图像积分过程中沿光轴平移探测器。使用此设备,我们展示了灵活景深的四个应用。首先,我们描述了扩展景深,其中使用非常大的光圈(低噪声)但具有几乎与深度无关的散焦模糊来捕获大的景深范围。使用单个模糊核对捕获的图像进行反卷积可得到具有扩展景深和高 SNR 的图像。接下来,我们展示了具有不连续景深的图像捕获。例如,可以清晰地拍摄近景和远景物体,而中间的物体则严重模糊。第三,我们展示了我们的相机可以捕获具有倾斜景深(Scheimpflug 成像)的图像而无需倾斜图像检测器。最后,我们展示了如何使用我们的相机来实现非平面景深。我们相信灵活的景深成像可以在摄影中开辟一个新的创意维度,并为科学成像、视觉和图形带来新的功能。