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CALIBRATION OF PANORAMIC CAMERAS WITH CODED TARGETS AND A 3D CALIBRATION FIELD

机译:用编码目标和3D校准场校准全景摄像机

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The aim of this paper is to present results achieved with a 3D terrestrial calibration field, designed for calibrating digital cameras and omnidirectional sensors. This terrestrial calibration field is composed of 139 ARUCO coded targets. Some experiments were performed using a Nikon D3100 digital camera with 8mm Samyang Bower fisheye lens. The camera was calibrated in this terrestrial test field using a conventional bundle adjustment with the Collinearity and mathematical models specially designed for fisheye lenses. The CMC software (Calibration with Multiple Cameras), developed in-house, was used for the calibration trials. This software was modified to use fisheye models to which the Conrady-Brown distortion equations were added. The target identification and image measurements of its four corners were performed automatically with a public software. Several experiments were performed with 16 images and the results were presented and compared. Besides the calibration of fish-eye cameras, the field was designed for calibration of a catadrioptic system and brief informations on the calibration of this unit will be provided in the paper.
机译:本文的目的是使用3D地面校准场实现的结果,专为校准数码摄像机和全向传感器而设计。这种地面校准场由139个Aruco编码目标组成。使用尼康D3100数码相机进行了一些实验,其中8毫米Samyang Bower Fisheye镜头。使用传统的捆绑调整,使用专为Fisheye镜片专为Fisheye镜片设计的共同性和数学模型,在该地面测试领域进行了校准。内部开发的CMC软件(带多个摄像机的校准)用于校准试验。修改了该软件以使用添加了Conrady-棕色失真方程的Fisheye模型。其四个角度的目标识别和图像测量是用公共软件自动执行的。用16个图像进行几个实验,并呈现并比较结果。除了鱼眼相机的校准外,该领域的设计用于校准CataDrioptic系统,并在本文中提供关于本机的校准的简要信息。

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