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A New Method for Measuring the Position of the End of Optical Fibersfor LAMOST

机译:LAMOST测量光纤末端位置的新方法

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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. Currently, the area CCD camera is used to measure the positions conveniently and quickly. However, due to too small size of area CCD, the large-size focal plate should be reduced large multiples to image on the area CCD, and in this process, there is error amplification which will disturb the improvement of measuring precision. So far, the precision of this method does not meet the requirement. Therefore, a new method with linear CCD sensors is created. The device consists of a rotary encoder and a scanning frame on which several linear CCD sensors are spliced into a measuring baseline. The scanning frame can be driven by step motor and take a slow rotation around the center axis of the focal plate and close to the surface of the focal plate. In the course of rotation, each time the scanning frame turns a very small angle, the linear CCD sensors take an acquisition and get the radial coordinate of the end of optical fibers, the rotary encoder records the angle coordinate, and this polar coordinates can be used to express the position of the end of optical fibers. This new method is a 1:1 measurement, and it hasn't error amplification but has high precision in theory. The main content of this paper is to build the measuring model of the new method with linear CCD.
机译:对于LAMOST(大天空区域多目标光纤光谱望远镜)光纤定位系统,在球形焦板上测量4000根光纤的末端位置是LAMOST的关键问题之一。当前,区域CCD相机用于方便且快速地测量位置。但是,由于面阵CCD的尺寸过小,因此需要将大尺寸的焦点板减小大倍数以在面阵CCD上成像,并且在此过程中,存在误差放大,这会干扰测量精度的提高。到目前为止,该方法的精度还不能满足要求。因此,创建了一种使用线性CCD传感器的新方法。该设备由旋转编码器和扫描框架组成,在扫描框架上将多个线性CCD传感器拼接成测量基线。扫描框架可以由步进电机驱动,并围绕焦板的中心轴并靠近焦板的表面缓慢旋转。在旋转过程中,每当扫描框架旋转一个很小的角度时,线性CCD传感器就会进行采集并获取光纤末端的径向坐标,旋转编码器会记录该角度坐标,并且该极坐标可以用于表示光纤末端的位置。这种新方法是1:1的测量,它没有误差放大,但是在理论上具有很高的精度。本文的主要内容是建立线性CCD新方法的测量模型。

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