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基于环形激光陀螺仪的精密角度测量系统

Precision Angle Measurement Systems on the Basis of Ring Laser Gyro.

作者信息

Filatov Yuri V, Pavlov Petr A, Velikoseltsev Alexander A, Schreiber K Ulrich

机构信息

Department of Laser Measurement and Navigation Systems, St. Petersburg State Electrotechnical University LETI, ul. Prof. Popova 5, 197376 St. Petersburg, Russia.

Geodetic Observatory Wettzell, Research Unit Satellite Geodesy, Technical University of Munich, 93444 Bad Koetzting, Germany.

出版信息

Sensors (Basel). 2020 Dec 4;20(23):6930. doi: 10.3390/s20236930.

Abstract

The main application of a ring laser gyroscope is navigation. It is currently the most widely used device for strapdown inertial navigation systems. However, it is also applicable for high-precision angle metrology systems. This paper discusses the properties of a laser dynamic goniometer (LDG) based on the ring laser gyroscope and designed for the calibration of optical polygons and digital angle converters, and for the measurement of angles between external mirrors (theodolite operating mode). We consider the main sources of uncertainty, such as the ring laser gyro bias due to an external magnetic field and the instability caused by the velocity of rotation along with applicable methods of their compensation. The reversal method providing separation of uncertainties of the LDG and the calibrated angle converter is analyzed in detail. The simplified cross-calibration method is also considered. The results of calibration of optical encoders of various designs-with and without their own rotors (on-axis and off-axis in Euramet terminology)-are presented. Some results of the dynamic goniometer for the measurement of angles between external mirrors are presented. It is shown that the LDG in this mode of operation demonstrates better accuracy than modern theodolites and total stations.

摘要

环形激光陀螺仪的主要应用领域是导航。它是目前捷联惯性导航系统中应用最为广泛的设备。然而,它也适用于高精度角度测量系统。本文讨论了一种基于环形激光陀螺仪的激光动态测角仪(LDG)的特性,该测角仪设计用于光学正多面体和数字角度转换器的校准,以及用于测量外部反射镜之间的角度(经纬仪工作模式)。我们考虑了不确定度的主要来源,例如外部磁场引起的环形激光陀螺仪偏置以及旋转速度导致的不稳定性,以及相应的补偿方法。详细分析了用于分离激光动态测角仪和已校准角度转换器不确定度的反转法。还考虑了简化的交叉校准方法。给出了各种设计的光学编码器(有转子和无转子,按照欧洲计量组织术语分别为同轴和离轴)的校准结果。展示了用于测量外部反射镜之间角度的动态测角仪的一些结果。结果表明,在此工作模式下,激光动态测角仪的精度优于现代经纬仪和全站仪。

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