Method for Determining Elements of Internal Orientation Calibration in Multi-Matrix Optoelectronic Devices

IF 0.3 Q4 ENGINEERING, MULTIDISCIPLINARY Science & Technique Pub Date : 2020-10-15 DOI:10.21122/2227-1031-2020-19-5-428-436
M. A. Starasotnikau, I. V. Padskrebkin, R. V. Feodortsau
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引用次数: 1

Abstract

In the operation schemes of optical electronic devices (OED), such as digital autocollimators, direction finders, Shack-Hartmann sensors, as well as astro-orientation systems, projection measuring systems, geometric calibration schemes for OED, the photo-detector acts not only as a receiving device, but also as a measuring device. The tasks facing the OED photo-detectors. The solution to the problem is the use of several photo-detectors installed on one electronic board. Since OED photo-detectors act, inter alia, as measuring devices, it is necessary to perform their geometric calibration. Geometric calibration involves the measurement of interior orientation parameters used in the processing of OED images. Geometric calibration makes it possible to eliminate errors in mutual exposure of photo-detectors on one electronic board installed in the focal plane, as well as distortions introduced by the OED lens, primarily by distortion. The correctness of the interior orientation parameter determination is influenced by the relative position of the collimator, with the help of which the geometric calibration is performed, and the calibrated OED itself, i. e. the external orientation elements. The task is to separate the interior orientation parameters and the elements of external orientation. This is achieved using the method of mathematical processing of measured data in the forward and inverted positions of the collimator. This method of geometric calibration allows to use it for geometric calibration of OED with a large number of photo-detectors. The paper presents the results of the geometric calibration of the interior orientation parameters when the collimator projects a test object onto three photo-detectors of the OED layout. The factors influencing on the accuracy of the geometric calibration of the interior orientation elements for OED are determined in the paper. The developed method for geometric calibration of the interior orientation parameters for multi-matrix OED provides high measurement accuracy – not more than 0.1''–0.2''.
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多矩阵光电器件内部定向标定要素的确定方法
在数字自准直仪、测向仪、夏克-哈特曼传感器、天文定向系统、投影测量系统、几何校正方案等光学电子器件的操作方案中,光电探测器不仅是接收装置,而且是测量装置。牛津英语词典光电探测器面临的任务。解决这个问题的办法是在一块电子板上安装几个光电探测器。由于光电探测器除其他外充当测量装置,因此有必要对其进行几何校准。几何校准涉及到测量内部的方向参数,用于处理的图像。几何校准可以消除安装在焦平面上的一个电子板上的光电探测器相互曝光的误差,以及由OED镜头主要由畸变引起的畸变。内部定向参数确定的正确性受准直器相对位置的影响(准直器的相对位置是进行几何定标的依据),也受标定后的OED本身即外部定向元素的影响。任务是分离内部定向参数和外部定向元素。这是通过对准直器正反两个位置的测量数据进行数学处理的方法实现的。这种几何校准方法可以用于具有大量光电探测器的OED的几何校准。本文给出了准直器将被测物体投射到三个光电探测器上的几何定标结果。确定了影响OED内方位要素几何定标精度的因素。所开发的多矩阵OED内部定向参数几何校准方法提供了高测量精度-不超过0.1“- 0.2”。
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来源期刊
Science & Technique
Science & Technique ENGINEERING, MULTIDISCIPLINARY-
自引率
50.00%
发文量
47
审稿时长
8 weeks
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