Ri Shien, Fujigaki Motoharu, Matui Toru, Morimoto Yoshiharu
Japan Society for the Promotion of Science, Graduate School of Systems Engineering, Wakayama University, Japan.
Appl Opt. 2006 Sep 20;45(27):6940-6. doi: 10.1364/ao.45.006940.
A camera based on the digital micromirror device (DMD) technology has been previously developed. In this optical system, the correspondence of each mirror of the DMD to each pixel of the CCD cannot readily be done since the pixel sizes of the DMD and the CCD are very small. An accurate pixel-to-pixel correspondence adjustment in the DMD camera by means of the phase-shifting moiré method is proposed. To perform high accurate adjustment of the optical system, the phase distribution of a moiré fringe pattern is analyzed when the CCD pixels and the DMD mirrors have a mismatch and/or misalignment with each other. This technique does not need a complicated setting or complex image processing to generate the moiré fringe pattern, and it needs only one captured image. In the adjustment experiment, the proposed method provided very accurate adjustment whose error was less than 1/25 pixel. An experiment of phase analysis to demonstrate the usefulness was performed.
一种基于数字微镜器件(DMD)技术的相机此前已被开发出来。在这个光学系统中,由于DMD和CCD的像素尺寸非常小,DMD的每个微镜与CCD的每个像素之间的对应关系不容易实现。本文提出了一种利用相移莫尔条纹法在DMD相机中进行精确的像素间对应调整的方法。为了对光学系统进行高精度调整,当CCD像素和DMD微镜相互不匹配和/或未对准时,分析莫尔条纹图案的相位分布。该技术不需要复杂的设置或复杂的图像处理来生成莫尔条纹图案,只需要一幅采集到的图像。在调整实验中,所提出的方法提供了非常精确的调整,其误差小于1/25像素。进行了相位分析实验以证明其有效性。