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Investigation of flame radiation sampling and temperature measurement through light field camera

机译:通过光场相机进行火焰辐射采样和温度测量的研究

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摘要

Different light field cameras (i.e., traditional and focused) can be used for the flame temperature measurement. But it is crucial to investigate which light field camera can provide better reconstruction accuracy for the flame temperature. In this study, numerical simulations were carried out to investigate the reconstruction accuracy of the flame temperature for the different light field cameras. The effects of flame radiation sampling of the light field cameras were described and evaluated. A novel concept of sampling region and sampling angle of the light field camera was proposed to assess the directional accuracy of the sampled rays of each pixel on the photosensor. It has been observed that the traditional light field camera sampled more rays for each pixel, hence the sampled rays of each pixel are approached less accurately from a single direction. The representative sampled ray was defined to obtain the direction of flame radiation. The radiation intensity of each pixel was calculated and indicated that the traditional light field camera sampled less radiation information than the focused light field camera. A non-negative least square (NNLS) algorithm was used to reconstruct the flame temperature. The reconstruction accuracy was also evaluated for the different distances from microlens array (MLA) to the photosensor. The results obtained from the simulations suggested that the focused light field camera performed better in comparison to the traditional light field camera. Experiments were also carried out to reconstruct the temperature distribution of ethylene diffusion flames based on the light field imaging, and to validate the proposed model.
机译:可以使用不同的光场相机(即传统相机和聚焦相机)进行火焰温度测量。但是,至关重要的是研究哪种光场相机可以为火焰温度提供更好的重建精度。在这项研究中,进行了数值模拟以研究不同光场相机的火焰温度的重建精度。描述并评估了光场摄像机火焰辐射采样的效果。提出了光场相机的采样区域和采样角度的新颖概念,以评估光电传感器上每个像素的采样光线的方向精度。已经观察到,传统的光场照相机为每个像素采样更多的光线,因此从单个方向不太精确地接近每个像素的采样光线。确定代表性的采样射线以获得火焰辐射的方向。计算出每个像素的辐射强度,表明传统的光场相机比聚焦光场相机采样的辐射信息少。使用非负最小二乘(NNLS)算法重建火焰温度。还评估了从微透镜阵列(MLA)到光电传感器的不同距离的重建精度。从模拟获得的结果表明,与传统的光场相机相比,聚焦光场相机的性能更好。还进行了基于光场成像重建乙烯扩散火焰温度分布的实验,并验证了所提出的模型。

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