Bhasker Ezekiel, Juang Ray, Majumder Aditi
University of California, Irvine, USA.
IEEE Trans Vis Comput Graph. 2007 Nov-Dec;13(6):1368-75. doi: 10.1109/TVCG.2007.70586.
Multi-projector displays today are automatically registered, both geometrically and photometrically, using cameras. Existing registration techniques assume pre-calibrated projectors and cameras that are devoid of imperfections such as lens distortion. In practice, however, these devices are usually imperfect and uncalibrated. Registration of each of these devices is often more challenging than the multi-projector display registration itself. To make tiled projection-based displays accessible to a layman user we should allow the use of uncalibrated inexpensive devices that are prone to imperfections. In this paper, we make two important advances in this direction. First, we present a new geometric registration technique that can achieve geometric alignment {\em in the presence of severe projector lens distortion} using a relatively inexpensive low-resolution camera. This is achieved via a closed-form model that relates the projectors to cameras, in planar multi-projector displays, using rational Bezier patches. This enables us to geometrically calibrate a 3000 x 2500 resolution planar multi-projector display made of 3 x 3 array of nine severely distorted projectors using a low resolution (640 x 480) VGA camera. Second, we present a photometric self-calibration technique for a projector-camera pair. This allows us to photometrically calibrate the same display made of nine projectors using a photometrically uncalibrated camera. To the best of our knowledge, this is the first work that allows geometrically imperfect projectors and photometrically uncalibrated cameras in calibrating multi-projector displays.
如今的多投影仪显示器通过相机自动进行几何和光度校准。现有的校准技术假定投影仪和相机已预先校准,且不存在诸如镜头畸变等缺陷。然而在实际中,这些设备通常并不完美且未经过校准。对这些设备中的每一个进行校准往往比多投影仪显示器校准本身更具挑战性。为了让普通用户能够使用基于平铺投影的显示器,我们应该允许使用易有缺陷的未校准廉价设备。在本文中,我们在这个方向上取得了两项重要进展。首先,我们提出了一种新的几何校准技术,该技术能够使用相对廉价的低分辨率相机在存在严重投影仪镜头畸变的情况下实现几何对齐。这是通过一个封闭形式的模型实现的,该模型在平面多投影仪显示器中使用有理贝塞尔面片将投影仪与相机关联起来。这使我们能够使用低分辨率(640×480)的VGA相机对由9个严重畸变的投影仪组成的3×3阵列、分辨率为3000×2500的平面多投影仪显示器进行几何校准。其次,我们提出了一种针对投影仪 - 相机对的光度自校准技术。这使我们能够使用未经光度校准的相机对由9个投影仪组成的同一显示器进行光度校准。据我们所知,这是第一项在多投影仪显示器校准中允许几何上有缺陷的投影仪和未经光度校准的相机的工作。