Opt Lett. 2023 May 15;48(10):2639-2642. doi: 10.1364/OL.487077.
A three-axis gyroscope is a vital component of an inertial measurement unit that can measure the rotation rates in three directions simultaneously. A novel three-axis resonant fiber-optic gyroscope (RFOG) configuration with a multiplexed broadband light source is proposed and demonstrated. The output light from the two vacant ports of the main gyroscope is reused as drive sources for the other two axial gyroscopes, which effectively improve the power utilization of the source. The interference between different axial gyroscopes is effectively avoided by optimizing the lengths of three fiber-optic ring resonators (FRRs) rather than by inserting other optical elements in the multiplexed link. With the optimal lengths, the influence of the input spectrum on the multiplexed RFOG is suppressed and a theoretical temperature dependence of the bias error as low as 1.08 × 10 °/h/°C is obtained. Finally, a navigation-grade three-axis RFOG is demonstrated with a fiber coil length of ∼100 m for each FRR.
三轴陀螺仪是惯性测量单元的重要组成部分,可同时测量三个方向的旋转速率。提出并演示了一种具有复用宽带光源的新型三轴谐振光纤陀螺仪(RFOG)结构。主陀螺仪的两个空闲端口的输出光被重新用作其他两个轴向陀螺仪的驱动源,这有效地提高了光源的功率利用率。通过优化三个光纤环形谐振器(FRR)的长度而不是在复用链路中插入其他光学元件,有效地避免了不同轴向陀螺仪之间的干涉。通过最佳长度,抑制了输入光谱对复用 RFOG 的影响,并且获得了低至 1.08 × 10 °/h/°C 的偏置误差的理论温度依赖性。最后,演示了一种导航级三轴 RFOG,每个 FRR 的光纤线圈长度约为 100 m。