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Implementation of multidirectional moire computerized tomography: multidirectional affine calibration

机译:多方向云纹计算机层析成像的实现:多方向仿射校正

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摘要

To realize three-dimensional (3D) instantaneous diagnoses for flow fields, many multidirectional optical computerized tomographic (optical CT) techniques based on laser interferometry have been proposed. Projections from different directions of these tomographic systems are captured simultaneously to reconstruct the test field. These projections are independent from each other. However, due to the inevitable errors from installation and difference between optical elements, projections will be imaged with different distortion and located at different positions on the sensors. Therefore, a multidirectional calibration should be performed to remap these projections to a unified coordinate system before CT reconstruction. As far as we know, the multidirectional calibration problem for laser interferometric CT techniques has never been discussed in previous research. In this paper, a six-directional moire tomographic system is designed. Considering the projection characteristics of moire deflectometry, a multidirectional affine calibration method is proposed to determine the extrinsic and intrinsic parameters of tomographic projections. With the calibration results, projections can be remapped to the unified coordinate system and the 3D distributions of flow field can be reconstructed. (C) 2016 Optical Society of America
机译:为了实现流场的三维(3D)瞬时诊断,已经提出了许多基于激光干涉术的多方向光学计算机断层摄影(光学CT)技术。同时捕获来自这些层析成像系统不同方向的投影以重建测试场。这些预测彼此独立。但是,由于不可避免的安装错误和光学元件之间的差异,将以不同的畸变成像投影,并将其放置在传感器上的不同位置。因此,在进行CT重建之前,应执行多方向校准以将这些投影重新映射到统一的坐标系。据我们所知,激光干涉CT技术的多方向校准问题在以前的研究中从未讨论过。本文设计了一种六向云纹层析成像系统。考虑到云纹偏转的投影特性,提出了一种多方向仿射校正方法来确定层析成像投影的外在和内在参数。利用校准结果,可以将投影重新映射到统一坐标系,并且可以重建流场的3D分布。 (C)2016美国眼镜学会

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