scholarly journals High-precision and non-contact Fiber Optic Gyroscope dynamic calibration system with dual Laser Doppler Vibrometers

2018 ◽  
Vol 1074 ◽  
pp. 012070
Author(s):  
Lei Chen ◽  
Yilan Zhou ◽  
Dengwei Zhang ◽  
Cheng Liu ◽  
Shuangliang Che
2021 ◽  
Author(s):  
Xin Chen ◽  
Miao Yan ◽  
Jie Yu ◽  
Ruoxiang Tang

1998 ◽  
Author(s):  
Chunxi Zhang ◽  
Nifang Song ◽  
Xinzhen Du ◽  
HongJie Xu ◽  
Weixu Zhang

2020 ◽  
Vol 54 ◽  
pp. 102071
Author(s):  
Shuai Zhao ◽  
Lei Chen ◽  
Ning Guan ◽  
Yilan Zhou ◽  
Dengwei Zhang ◽  
...  

2013 ◽  
Vol 332 ◽  
pp. 124-129 ◽  
Author(s):  
Aqeel Abbas

A novel design of gyrocompass consisting of a single axis Fiber Optic Gyroscope (FOG) and a Theodolite is proposed to meet the requirements of low-cost, fast and high-precision. This algorithm uses FOG data and theodolite encoder feedback to determine Azimuth. Micro computer based software is also discussed which was developed for implementation of this scheme; finally test results and plots are briefly presented which proves effectiveness of the designed methodology. By this design an accuracy of 0.08ois achieved in approximately 5 min time.


2020 ◽  
Vol 60 ◽  
pp. 102365
Author(s):  
Bo Yang ◽  
Yong Li ◽  
Fei Teng ◽  
Li Sun ◽  
Xiaona Zhou ◽  
...  

2013 ◽  
Vol 2013 ◽  
pp. 1-9
Author(s):  
Hui Li ◽  
Liyang Cui ◽  
Zhili Lin ◽  
Chunxi Zhang

In order to improve the dynamic performance of high precision interferometer fiber optic gyroscope (IFOG), the influencing factors of the fast response characteristics are analyzed based on a proposed assistant design setup, and a high dynamic detection method is proposed to suppress the adverse effects of the key influencing factors. The assistant design platform is built by using the virtual instrument technology for IFOG, which can monitor the closed-loop state variables in real time for analyzing the influence of both the optical components and detection circuit on the dynamic performance of IFOG. The analysis results indicate that nonlinearity of optical Sagnac effect, optical parameter uncertainty, dynamic characteristics of internal modules and time delay of signal detection circuit are the major causes of dynamic performance deterioration, which can induce potential system instability in practical control systems. By taking all these factors into consideration, we design a robust control algorithm to realize the high dynamic closed-loop detection of IFOG. Finally, experiments show that the improved 0.01 deg/h high precision IFOG with the proposed control algorithm can achieve fast tracking and good dynamic measurement precision.


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