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Three-dimensional temperature field measurement of flame using a single light field camera

机译:使用单光场相机测量火焰的三维温度场

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摘要

Compared with conventional camera, the light field camera takes the advantage of being capable of recording the direction and intensity information of each ray projected onto the CCD (charge couple device) sensor simultaneously. In this paper, a novel method is proposed for reconstructing three-dimensional (3-D) temperature field of a flame based on a single light field camera. A radiative imaging of a single light field camera is also modeled for the flame. In this model, the principal ray represents the beam projected onto the pixel of the CCD sensor. The radiation direction of the ray from the flame outside the camera is obtained according to thin lens equation based on geometrical optics. The intensities of the principal rays recorded by the pixels on the CCD sensor are mathematically modeled based on radiative transfer equation. The temperature distribution of the flame is then reconstructed by solving the mathematical model through the use of least square QR-factorization algorithm (LSQR). The numerical simulations and experiments are carried out to investigate the validity of the proposed method. The results presented in this study show that the proposed method is capable of reconstructing the 3-D temperature field of a flame.
机译:与传统相机相比,光场相机具有能够同时记录投射到CCD(电荷耦合器件)传感器上的每条光线的方向和强度信息的优势。本文提出了一种基于单光场相机重建火焰三维(3-D)温度场的新方法。还为火焰建模了单个光场相机的辐射成像。在此模型中,主光线代表投射到CCD传感器像素上的光束。来自摄像机外部火焰的射线的辐射方向是根据基于几何光学的薄透镜方程获得的。由像素在CCD传感器上记录的主光线的强度基于辐射传递方程进行数学建模。然后通过使用最小二乘QR分解算法(LSQR)求解数学模型来重建火焰的温度分布。通过数值模拟和实验研究了该方法的有效性。这项研究中提出的结果表明,所提出的方法能够重建火焰的3-D温度场。

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