Shang Kejun, Lei Ming, Fang Yuan, Yu Huaiyong, Zhang Lizhe
Appl Opt. 2020 May 1;59(13):3995-3999. doi: 10.1364/AO.389011.
Resonator fiber-optic gyros (RFOGs) are one of the most promising candidates for next-generation inertial rotation sensors. The frequency servo loop is used to lock the laser frequency to the resonance frequency of fiber ring resonator via adjusting the laser diode current, which increases accompanying intensity variation and induces RFOG drift. RFOG output compensation using a bias-sampling technique is proposed to suppress intensity error. The linear relationship between the RFOG output and bias is verified by theory and experimental results, and the bias-sampling compensation technique by monitoring the bias signal is analyzed in detail. With the compensation technique, intensity error is significantly suppressed, and the RFOG bias stability is effectively improved from 127.2 to 7.4 deg/h, which demonstrates tactical-grade performance.
谐振器光纤陀螺仪(RFOG)是下一代惯性旋转传感器最有前途的候选者之一。频率伺服环路用于通过调节激光二极管电流将激光频率锁定到光纤环形谐振器的谐振频率,这会随着强度变化而增加并导致RFOG漂移。提出了一种使用偏置采样技术的RFOG输出补偿方法来抑制强度误差。通过理论和实验结果验证了RFOG输出与偏置之间的线性关系,并详细分析了通过监测偏置信号的偏置采样补偿技术。采用该补偿技术,强度误差得到显著抑制,RFOG偏置稳定性从127.2度/小时有效提高到7.4度/小时,展现出战术级性能。