Analysis and Improvement of Frequency Stabilization Characteristics of a Total Reflection Prism Laser Gyro

To rectify the low accuracy of frequency stabilization for a total reflection prism laser gyro (TRPLG), a mathematical model for TRPLG frequency stabilization was established. Wavelet filtering was introduced into the phase-sensitive demodulation process, with a 6-scale decomposition for the alterna...

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Main Authors: Yuanbo Tao, Sihai Li, Shiming Liu
Format: Article
Language:English
Published: IEEE 2018-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8531606/
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author Yuanbo Tao
Sihai Li
Shiming Liu
author_facet Yuanbo Tao
Sihai Li
Shiming Liu
author_sort Yuanbo Tao
collection DOAJ
description To rectify the low accuracy of frequency stabilization for a total reflection prism laser gyro (TRPLG), a mathematical model for TRPLG frequency stabilization was established. Wavelet filtering was introduced into the phase-sensitive demodulation process, with a 6-scale decomposition for the alternating current (AC) signal of light intensity used with the db4 wavelet. Combined with soft threshold and forced denoising, the signal-to-noise ratio (SNR) of the phase-sensitive signal was improved by 23.3%, with the accuracy of the frequency stabilization improved by 0.5 orders of magnitude. Increasing the variable gain in the forward channel stabilized the dynamic performance of the frequency stabilization control system. A temperature-compensated feed-forward control system was used to achieve full compensation for the temperature-induced frequency stabilization error, which also improved the accuracy of the frequency stabilization by 1 order of magnitude. Combined with wavelet filtering and feed-forward compensation, the optimized frequency stabilization control system improved the accuracy of frequency stabilization by 1.5 orders of magnitude compared with the original frequency stabilization control system in the full temperature range, and it improved the gyro's accuracy by more than 40%.
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spelling doaj.art-828ea1c3b355479a8887369314d7ff612022-12-21T22:10:31ZengIEEEIEEE Access2169-35362018-01-016691856919410.1109/ACCESS.2018.28805698531606Analysis and Improvement of Frequency Stabilization Characteristics of a Total Reflection Prism Laser GyroYuanbo Tao0https://orcid.org/0000-0003-1493-1597Sihai Li1Shiming Liu2School of Automation, Northwestern Polytechnical University, Xi’an, ChinaSchool of Automation, Northwestern Polytechnical University, Xi’an, ChinaSchool of Automation, Northwestern Polytechnical University, Xi’an, ChinaTo rectify the low accuracy of frequency stabilization for a total reflection prism laser gyro (TRPLG), a mathematical model for TRPLG frequency stabilization was established. Wavelet filtering was introduced into the phase-sensitive demodulation process, with a 6-scale decomposition for the alternating current (AC) signal of light intensity used with the db4 wavelet. Combined with soft threshold and forced denoising, the signal-to-noise ratio (SNR) of the phase-sensitive signal was improved by 23.3%, with the accuracy of the frequency stabilization improved by 0.5 orders of magnitude. Increasing the variable gain in the forward channel stabilized the dynamic performance of the frequency stabilization control system. A temperature-compensated feed-forward control system was used to achieve full compensation for the temperature-induced frequency stabilization error, which also improved the accuracy of the frequency stabilization by 1 order of magnitude. Combined with wavelet filtering and feed-forward compensation, the optimized frequency stabilization control system improved the accuracy of frequency stabilization by 1.5 orders of magnitude compared with the original frequency stabilization control system in the full temperature range, and it improved the gyro's accuracy by more than 40%.https://ieeexplore.ieee.org/document/8531606/Total reflection prism laser gyroaccuracy of frequency stabilizationwavelet filteringfeed-forward controlfull compensationgyro’s accuracy
spellingShingle Yuanbo Tao
Sihai Li
Shiming Liu
Analysis and Improvement of Frequency Stabilization Characteristics of a Total Reflection Prism Laser Gyro
IEEE Access
Total reflection prism laser gyro
accuracy of frequency stabilization
wavelet filtering
feed-forward control
full compensation
gyro’s accuracy
title Analysis and Improvement of Frequency Stabilization Characteristics of a Total Reflection Prism Laser Gyro
title_full Analysis and Improvement of Frequency Stabilization Characteristics of a Total Reflection Prism Laser Gyro
title_fullStr Analysis and Improvement of Frequency Stabilization Characteristics of a Total Reflection Prism Laser Gyro
title_full_unstemmed Analysis and Improvement of Frequency Stabilization Characteristics of a Total Reflection Prism Laser Gyro
title_short Analysis and Improvement of Frequency Stabilization Characteristics of a Total Reflection Prism Laser Gyro
title_sort analysis and improvement of frequency stabilization characteristics of a total reflection prism laser gyro
topic Total reflection prism laser gyro
accuracy of frequency stabilization
wavelet filtering
feed-forward control
full compensation
gyro’s accuracy
url https://ieeexplore.ieee.org/document/8531606/
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AT sihaili analysisandimprovementoffrequencystabilizationcharacteristicsofatotalreflectionprismlasergyro
AT shimingliu analysisandimprovementoffrequencystabilizationcharacteristicsofatotalreflectionprismlasergyro