Title
A self-calibration method for non-orthogonal angles of gimbals in rotational inertial navigation system based on fiber optic gyro
Abstract
Rotating modulation technique is a mature method that has been widely used in the rotational inertial navigation system (RINS). Tri-axis RINS has three gimbals, and the Inertial Measurement Unit can rotate along three directions to modulate the inertial devices' errors, so that the navigation accuracy of the system can be greatly improved. However, the outputs of attitudes are easily affected by the non-orthogonal angles of gimbals, which should be accurately calibrated and compensated. In this paper, the effects of the non-orthogonal angles on the attitudes are discussed detailed and simulations based on Matlab are conducted to verify that firstly; then, a self-calibration method based on the outputs of the fiber optic gyroscope and photoelectric encoder is proposed. Experimental results in a real tri-axis RINS show that the attitude outputs accuracy are improved from 150 to less than 10, which verify the practicability of the calibration method proposed in this paper.
Year
DOI
Venue
2018
10.1177/0142331217729203
TRANSACTIONS OF THE INSTITUTE OF MEASUREMENT AND CONTROL
Keywords
DocType
Volume
Rotational inertial navigation system,calibration,inertial measurement,non-orthogonal angle,attitude output accuracy
Journal
40.0
Issue
ISSN
Citations 
13
0142-3312
0
PageRank 
References 
Authors
0.34
4
4
Name
Order
Citations
PageRank
Zengjun Liu162.02
Lei Wang2401111.60
Wei Wang333.10
Tianxiao Song411.40