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Full-field calibration of color camera chromatic aberration using absolute phase maps

机译:使用绝对相位图对彩色相机色差进行全场校准

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摘要

The refractive index of a lens varies for different wavelengths of light, and thus the same incident light with different wavelengths has different outgoing light. This characteristic of lenses causes images captured by a color camera to display chromatic aberration (CA), which seriously reduces image quality. Based on an analysis of the distribution of CA, a full-field calibration method based on absolute phase maps is proposed in this paper. Red, green, and blue closed sinusoidal fringe patterns are generated, consecutively displayed on an LCD (liquid crystal display), and captured by a color camera from the front viewpoint. The phase information of each color fringe is obtained using a four-step phase-shifting algorithm and optimum fringe number selection method. CA causes the unwrapped phase of the three channels to differ. These pixel deviations can be computed by comparing the unwrapped phase data of the red, blue, and green channels in polar coordinates. CA calibration is accomplished in Cartesian coordinates. The systematic errors introduced by the LCD are analyzed and corrected. Simulated results show the validity of the proposed method and experimental results demonstrate that the proposed full-field calibration method based on absolute phase maps will be useful for practical software-based CA calibration.
机译:透镜的折射率随光的不同波长而变化,因此具有不同波长的相同入射光具有不同的出射光。镜头的这种特性会导致彩色相机捕获的图像显示色差(CA),从而严重降低图像质量。在分析CA分布的基础上,提出了一种基于绝对相位图的全场标定方法。生成红色,绿色和蓝色的闭合正弦条纹图案,连续显示在LCD(液晶显示器)上,并由彩色摄像机从正面观察。使用四步相移算法和最佳条纹数选择方法获得每个彩色条纹的相位信息。 CA导致三个通道的展开相位不同。这些像素偏差可以通过在极坐标中比较红色,蓝色和绿色通道的展开相位数据来计算。 CA校准是在笛卡尔坐标中完成的。 LCD引入的系统错误会得到分析和纠正。仿真结果表明了该方法的有效性,实验结果表明,基于绝对相位图的全场标定方法对于基于软件的实用CA标定将是有用的。

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