Karbasi Salman, Arianpour Ashkan, Motamedi Nojan, Mellette William M, Ford Joseph E
Appl Opt. 2015 Jun 10;54(17):5444-52. doi: 10.1364/AO.54.005444.
Imaging fiber bundles can map the curved image surface formed by some high-performance lenses onto flat focal plane detectors. The relative alignment between the focal plane array pixels and the quasi-periodic fiber-bundle cores can impose an undesirable space variant moiré pattern, but this effect may be greatly reduced by flat-field calibration, provided that the local responsivity is known. Here we demonstrate a stable metric for spatial analysis of the moiré pattern strength, and use it to quantify the effect of relative sensor and fiber-bundle pitch, and that of the Bayer color filter. We measure the thermal dependence of the moiré pattern, and the achievable improvement by flat-field calibration at different operating temperatures. We show that a flat-field calibration image at a desired operating temperature can be generated using linear interpolation between white images at several fixed temperatures, comparing the final image quality with an experimentally acquired image at the same temperature.
成像光纤束可以将一些高性能透镜形成的弯曲图像表面映射到平面焦平面探测器上。焦平面阵列像素与准周期光纤束纤芯之间的相对对准可能会产生不良的空间变化莫尔条纹图案,但只要局部响应度已知,通过平场校准可大大降低这种效应。在这里,我们展示了一种用于莫尔条纹图案强度空间分析的稳定度量,并使用它来量化相对传感器和光纤束间距以及拜耳彩色滤光片的影响。我们测量了莫尔条纹图案的热依赖性,以及在不同工作温度下通过平场校准可实现的改进。我们表明,可以使用几个固定温度下的白色图像之间的线性插值来生成所需工作温度下的平场校准图像,并将最终图像质量与相同温度下实验获取的图像进行比较。