Suppression of Self-Noise and Environmental Disturbances by Fusion in Fiber-Optic Gyroscopes for Precision Measurement
Author:
Affiliation:
1. State Key Laboratory of Advanced Optical Communication Systems and Networks, School of Electronics, Peking University, Beijing, China
2. School of Electronics Engineering and Computer Science, Peking University, Beijing, China
Funder
National Key Research and Development Program of China
National Natural Science Foundation of China
Publisher
Institute of Electrical and Electronics Engineers (IEEE)
Subject
Electrical and Electronic Engineering,Instrumentation
Link
http://xplorestaging.ieee.org/ielx7/7361/10168680/10120720.pdf?arnumber=10120720
Reference36 articles.
1. New Method for Gravitational Wave Detection with Atomic Sensors
2. BlueSeis3A: Full Characterization of a 3C Broadband Rotational Seismometer
3. Modification of an RBF ANN-Based Temperature Compensation Model of Interferometric Fiber Optical Gyroscopes
4. Differential Fiber Optic Gyroscope Driven by Two Broadband Sources of Different Wavelengths
5. A superconducting gravity gradiometer for measurements from a moving vehicle
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2. Improved Fusion Algorithm for Fiber-Optic Gyroscope: Suppressing Intrinsic Noise and Environmental Disturbances;Journal of Lightwave Technology;2024-08-15
3. Sensitivity-enhanced fiber optic gyroscope for rotational seismology;Advanced Fiber Laser Conference (AFL2023);2024-03-18
4. A Polarization Multiplexing Interferometric Fiber Optic Gyroscope With Faraday Effect and Shupe Effect Compensation;IEEE Sensors Journal;2024-02-01
5. Differential-mode and common-mode measurements based on fiber-optic gyroscopes;AOPC 2023: Optic Fiber Gyro;2023-12-18
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