Paper
18 December 2023 Research on the influence of dynamic error of optical gyroscope based on closed loop model
Author Affiliations +
Proceedings Volume 12968, AOPC 2023: Optic Fiber Gyro ; 129681Y (2023) https://doi.org/10.1117/12.3008066
Event: Applied Optics and Photonics China 2023 (AOPC2023), 2023, Beijing, China
Abstract
During the vibration process, the output of the gyroscope will add a non-zero offset small amount based on the Earth's rotational speed component, which is the output error term of the gyroscope vibration. When the gyroscope adopts two different closed-loop models, the error magnitude of the same gyroscope is different. Therefore, selecting an optimal closed-loop model while adjusting appropriate closed-loop parameters is crucial for solving the vibration problem of gyroscopes. Firstly, compare the differences and stability conditions between the two closed-loop models; Secondly, analyze the reasons for the error terms generated during the vibration process of the gyroscope and the reasons for the different sizes of error terms generated by different models; Then simulate and analyze the output of gyroscope vibration under different closed-loop models. The simulation and specific experimental results indicate that selecting an optimal closed-loop model shortens the closed-loop integration delay time of the model, and maximizes the closed-loop gain as much as possible while ensuring that there are no resonance peaks in the closed-loop amplitude frequency characteristic curve. This can reduce the output error term of the gyroscope and improve its dynamic performance.
(2023) Published by SPIE. Downloading of the abstract is permitted for personal use only.
Zhenjing Luo, Wenlong Zuo, Xiaoming Zhang, and Zheng Yang "Research on the influence of dynamic error of optical gyroscope based on closed loop model", Proc. SPIE 12968, AOPC 2023: Optic Fiber Gyro , 129681Y (18 December 2023); https://doi.org/10.1117/12.3008066
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KEYWORDS
Gyroscopes

Vibration

Performance modeling

Error analysis

Demodulation

Fiber optic gyroscopes

Systems modeling

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