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A novel calibration method of CCD camera for LAMOST

机译:一种用于拉米棒的CCD摄像机的新型校准方法

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Large Sky Area Multi-object Fiber Spectroscopic Telescope – LAMOST, with a 1.75m-diameter focal plane on which4000 optical fibers are arranged, is one of major scientific projects in China. During the surveying process of LAMOST,the optical imaging system makes the astrometric objects be imaged in the focal plane, and the optical fiber positioningsystem controls the 4000 fibers to be aligned with these objects and obtain their spectrum. In order to correct thepositioning error of these optical fibers, the CCD camera is used to detect these fibers’ position in the way of close-rangephotogrammetry.As we all know, the calibration quality of the CCD camera is one of the most important factors for detection precision.However, the camera calibration has two following problems in the field work of LAMOST. First, the camera parametersare not stable due to the changes of on-site work environment and the vibration during movement. So, the CCD cameramust be on-line calibrated. Second, a large-size high-precision calibration target is needed to calibrate the camera, for thefocal plane is very big. Making such a calibration target, it is very difficult and costly. Meanwhile, the large calibrationtarget is hard to be fixed on LAMOST because of the space constraint.In this paper, an improved bundle adjustment self-calibration method is proposed to solve the two problems above. Theresults of experiment indicate that this novel calibration method needs only a few control points while the traditionalcalibration methods need much more control points to get the same accuracy. So the method could realize the on-linehigh-precision calibration of CCD camera for LAMOST.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:大型天空区域多物体光纤光谱望远镜 - 拉米芯,安排了1.75米直径的焦平面,是中国的主要科学项目之一。在拉米棒的测量过程中,光学成像系统使得体尺对象在焦平面上成像,并且光纤定位系统控制4000纤维与这些物体对齐并获得它们的光谱。为了纠正这些光纤的定位误差,CCD相机用于以特写方式检测这些纤维的位置。我们都知道,CCD相机的校准质量是最重要的因素之一检测精度。然而,相机校准在拉莫斯蒂的野外工作中有两个问题。首先,由于现场工作环境的变化和运动过程中的振动,相机参数不稳定。因此,CCD CamerAMust在线校准。其次,需要大尺寸的高精度校准目标来校准相机,对于芯片平面非常大。制作这种校准目标,它非常困难且昂贵。同时,由于空间约束,大型批量次数难以固定在拉米芯骨上。本文提出了一种改进的束调节自校准方法来解决上述两个问题。实验结果表明,这种新颖的校准方法只需要少量的控制点,而传统方法需要更多的控制点以获得相同的准确性。因此,该方法可以实现LAMOST的CCD摄像机的在线精度校准。©(2012)照片光学仪表工程师(SPIE)的版权协会。仅供个人使用的摘要下载。

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