TY - GEN
T1 - Research on Polarization Error and Suppression Methods for Integrated Fiber Optic Gyroscopes
AU - Zicheng, Wang
AU - Zhizi, Zhang
AU - Huachuan, Zhao
AU - Changsheng, Zhu
AU - Guochen, Wang
AU - Xiangjun, Zhang
N1 - Publisher Copyright:
© 2024 IEEE.
PY - 2024
Y1 - 2024
N2 - The integrated interferometric fiber optic gyroscope has gradually replaced traditional fiber optic gyroscope due to its advantages of miniaturization and low power consumption. However, a significant polarization error arises in integrated optical chips due to no polarization-maintaining fiber connections among individual devices, which considerably reduces the angular velocity measurement accuracy and environmental stability of the gyroscope. Therefore, the paper analyzes the transmission characteristics of optical chips and reveals that the primary factors affecting the polarization error are the extinction ratio of the integrated light source chip and the polarization degree of the waveguide coupler. Simultaneously, we designed a novel waveguide coupler structure to maintain high polarization. Ultimately, we constructed an optical experimental verification platform and manufactured a fiber-integrated chip based on theoretical analysis. Through optical spectrum analyzer and a polarization analyzer, we confirmed that the novel optical chip maintains high polarization extinction ratios. The angular velocity test was conducted in gyro system, and the bias stability under 100s smooth was 0.0496 °/h.
AB - The integrated interferometric fiber optic gyroscope has gradually replaced traditional fiber optic gyroscope due to its advantages of miniaturization and low power consumption. However, a significant polarization error arises in integrated optical chips due to no polarization-maintaining fiber connections among individual devices, which considerably reduces the angular velocity measurement accuracy and environmental stability of the gyroscope. Therefore, the paper analyzes the transmission characteristics of optical chips and reveals that the primary factors affecting the polarization error are the extinction ratio of the integrated light source chip and the polarization degree of the waveguide coupler. Simultaneously, we designed a novel waveguide coupler structure to maintain high polarization. Ultimately, we constructed an optical experimental verification platform and manufactured a fiber-integrated chip based on theoretical analysis. Through optical spectrum analyzer and a polarization analyzer, we confirmed that the novel optical chip maintains high polarization extinction ratios. The angular velocity test was conducted in gyro system, and the bias stability under 100s smooth was 0.0496 °/h.
KW - Gyroscope
KW - extinction ratio
KW - integration technology
KW - polarization error
KW - waveguide coupler
UR - https://www.scopus.com/pages/publications/105007284757
U2 - 10.1109/AISOMT64170.2024.10992061
DO - 10.1109/AISOMT64170.2024.10992061
M3 - 会议稿件
AN - SCOPUS:105007284757
T3 - 2024 IEEE Academic International Symposium on Optoelectronics and Microelectronics Technology, AISOMT 2024
SP - 128
EP - 133
BT - 2024 IEEE Academic International Symposium on Optoelectronics and Microelectronics Technology, AISOMT 2024
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2024 IEEE Academic International Symposium on Optoelectronics and Microelectronics Technology, AISOMT 2024
Y2 - 21 November 2024 through 22 November 2024
ER -