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首页> 外文期刊>ISPRS Journal of Photogrammetry and Remote Sensing >Calibration of a catadioptric omnidirectional vision system with conic mirror
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Calibration of a catadioptric omnidirectional vision system with conic mirror

机译:用圆锥镜校准折反射全向视觉系统

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Omnidirectional vision systems that enable 360 imaging have been widely used in several research areas, including close-range photogrammetry, which allows the accurate 3D measurement of objects. To achieve accurate results in Photogrammetric applications, it is necessary to model and calibrate these systems. The major contribution of this paper relates to the rigorous geometric modeling and calibration of a catadioptric, omnidirectional vision system that is composed of a wide-angle lens camera and a conic mirror. The indirect orientation of the omnidirectional images can also be estimated using this rigorous mathematical model. When calibrating the system, which is composed of a wide-angle camera and a conic mirror, misalignment of the conical mirror axis with respect to the camera's optical axis is a critical problem that must be considered in mathematical models. The interior calibration technique developed in this paper encompasses the following steps: wide-angle camera calibration; conic mirror modeling; and estimation of the transformation parameters between the camera and conic mirror reference systems. The main advantage of the developed technique is that it does not require accurate physical alignment between the camera and conic mirror axis. The exterior orientation is based on the properties of the conic mirror reflection. Experiments were conducted with images collected from a calibration field, and the results verified that the catadioptric omnidirectional system allows for the generation of ground coordinates with high geometric quality, provided that rigorous photogrammetric processes are applied. (C) 2015 International Society for Photogrammetry and Remote Sensing, Inc. (ISPRS). Published by Elsevier B.V. All rights reserved.
机译:支持360度成像的全向视觉系统已在多个研究领域广泛使用,包括近距离摄影测量法,该技术可以对物体进行精确的3D测量。为了在摄影测量应用中获得准确的结果,有必要对这些系统进行建模和校准。本文的主要贡献涉及由广角镜相机和圆锥镜组成的折反射全向视觉系统的严格几何建模和校准。全向图像的间接方向也可以使用此严格的数学模型进行估算。校准由广角相机和圆锥镜组成的系统时,圆锥镜轴相对于相机光轴的未对准是数学模型中必须考虑的关键问题。本文开发的内部校准技术包括以下步骤:广角相机校准;圆锥镜造型;并估计摄像机和圆锥镜参考系统之间的转换参数。开发的技术的主要优点是它不需要在摄像机和圆锥镜轴之间进行精确的物理对准。外部方向基于圆锥镜反射的属性。对从校准场收集的图像进行了实验,结果证明,如果应用了严格的摄影测量过程,则折反射全向系统可以生成具有高几何质量的地面坐标。 (C)2015国际摄影测量与遥感学会(ISPRS)。由Elsevier B.V.发布。保留所有权利。

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