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线性振动环境下环形激光陀螺G敏感失准角校准

Ring Laser Gyro G-Sensitive Misalignment Calibration in Linear Vibration Environments.

作者信息

Wang Lin, Wu Wenqi, Li Geng, Pan Xianfei, Yu Ruihang

机构信息

National University of Defense Technology, Changsha 410073, China.

出版信息

Sensors (Basel). 2018 Feb 16;18(2):601. doi: 10.3390/s18020601.

Abstract

The ring laser gyro (RLG) dither axis will bend and exhibit errors due to the specific forces acting on the instrument, which are known as g-sensitive misalignments of the gyros. The g-sensitive misalignments of the RLG triad will cause severe attitude error in vibration or maneuver environments where large-amplitude specific forces and angular rates coexist. However, g-sensitive misalignments are usually ignored when calibrating the strapdown inertial navigation system (SINS). This paper proposes a novel method to calibrate the g-sensitive misalignments of an RLG triad in linear vibration environments. With the SINS is attached to a linear vibration bench through outer rubber dampers, rocking of the SINS can occur when the linear vibration is performed on the SINS. Therefore, linear vibration environments can be created to simulate the harsh environment during aircraft flight. By analyzing the mathematical model of g-sensitive misalignments, the relationship between attitude errors and specific forces as well as angular rates is established, whereby a calibration scheme with approximately optimal observations is designed. Vibration experiments are conducted to calibrate g-sensitive misalignments of the RLG triad. Vibration tests also show that SINS velocity error decreases significantly after g-sensitive misalignments compensation.

摘要

环形激光陀螺(RLG)的抖动轴会因作用在仪器上的比力而弯曲并出现误差,这些误差被称为陀螺的重力敏感失准。RLG三轴的重力敏感失准会在存在大幅比力和角速率的振动或机动环境中导致严重的姿态误差。然而,在校准捷联惯性导航系统(SINS)时,重力敏感失准通常被忽略。本文提出了一种在直线振动环境中校准RLG三轴重力敏感失准的新方法。通过外部橡胶阻尼器将SINS安装在直线振动台上,对SINS进行直线振动时会发生SINS的晃动。因此,可以创建直线振动环境来模拟飞机飞行过程中的恶劣环境。通过分析重力敏感失准的数学模型,建立了姿态误差与比力以及角速率之间的关系,据此设计了一种具有近似最优观测值的校准方案。进行振动实验以校准RLG三轴的重力敏感失准。振动测试还表明,在补偿重力敏感失准后,SINS速度误差显著降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ad1/5855961/497700b91cdb/sensors-18-00601-g001.jpg

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