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Automated trinocular stereo imaging system for three-dimensional surface wave measurements

机译:自动化三目立体成像系统,用于三维表面波测量

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摘要

A novel automated trinocular stereo imaging system (ATSIS) is developed for non-intrusively measuring the temporal evolution of three-dimensional wave characteristics. The system consists of three progressive digital cameras to provide three independent stereo-pairs, i.e. left-right, left-center, and center-right, for accurately estimating depth of a scene. A third camera assists to resolve correspondence problems due to specular reflection on the water surface and provides additional constraints on image matching, dramatically reducing the chance of a mismatch. An oblique configuration for the trinocular system effectively increases spatial coverage, allowing observations of wave phenomena over a broad range of spatial scales. The height resolution is increased with the optical axes of the cameras pointed at an oblique angle with respect to vertical surface wave displacements. A new exterior calibration procedure is developed in this paper to determine the orientation of cameras in the field. Field experiments demonstrate that ATSIS can robustly measure hundreds of matched image points in seconds, allowing fast extraction of the temporal evolution of a three-dimensional surface wave field.
机译:开发了一种新颖的自动三目立体成像系统(ATSIS),用于非侵入式地测量三维波特征的时间演变。该系统由三个累进数码相机组成,可提供三个独立的立体声对,即左右,左右中心和左右中心,以准确估计场景深度。第三台摄像机有助于解决由于水面上镜面反射而引起的对应问题,并为图像匹配提供了额外的限制,从而大大减少了不匹配的可能性。三目镜系统的倾斜配置有效地增加了空间覆盖范围,从而可以在广泛的空间范围内观察波现象。当照相机的光轴相对于垂直表面波位移倾斜时,高度分辨率会提高。本文开发了一种新的外部校准程序,以确定野外摄像机的方向。现场实验表明,ATSIS可以在几秒钟内可靠地测量数百个匹配的图像点,从而可以快速提取三维表面波场的时间演变。

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