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Photogrammetry-based metrology of fiber positioner in LAMOST

机译:基于摄影测量的拉摩器光纤定位器的计量

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Measuring the position of the end of 4000 optical fibers on the spherical focal plate for the LAMOST (Large Sky Area Multi-Object Fiber Spectroscopy Telescope) optical fibers positioning system is one of the key problems for LAMOST. The accuracy of optical fibers positioning system is guaranteed by feedback from measuring the position of the end of optical fiber. The position of the end of optical fiber is measured by photogrammetry with precision calibration. However, given the complexities in the optical fiber focal plane and the fiber positioner, the accurate standard point is considerably difficult to obtain, which results in insufficient calibration accuracy. To solve this problem, a convenient calibration method based on the Flexible Planar Target (FPT) is proposed. In this method, each fiber positioning unit positions the fiber to 16 designed locations, which are relatively accurate. These points form a high-precision 2D point array that can be used as the planar target. In this manner, each fiber positioning unit can be regarded as a small high-precision planar target. All small high-precision planar targets are assembled to form the Flexible Planar Target (FPT), which is used for calibration. Experimental results indicate that this improved method can reach a higher precision than that of previous method.
机译:测量4000光纤在闸阀(大型天空区域多物体光纤扫视望远镜)光纤定位系统的球面焦板上的位置是拉米芯的关键问题之一。通过反馈测量光纤结束的位置,保证光纤定位系统的精度。光纤结束的位置通过摄影测量测量,具有精确校准。然而,考虑到光纤焦平面和光纤定位器中的复杂性,准确的标准点很难获得,从而导致校准精度不足。为了解决这个问题,提出了一种基于柔性平面目标(FPT)的方便校准方法。在该方法中,每个光纤定位单元将光纤定位到16设计的位置,其相对准确。这些点形成高精度的2D点阵列,可以用作平面目标。以这种方式,每个光纤定位单元可以被视为小型高精度平面目标。组装所有小型高精度平面目标以形成柔性平面目标(FPT),用于校准。实验结果表明,这种改进的方法可以达到比先前方法的精度更高。

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