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Ring laser gyroscope based on standard single-mode fiber and semiconductor optical amplifier

机译:基于标准单模光纤和半导体光放大器的环形激光陀螺仪

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In this work, we present an optical gyroscope based on hybrid semiconductor-fiber ring laser. The proposed optical gyroscope is a Ring Laser Gyroscope (RLG), in which the laser cavity is a fiber ring of standard single mode fiber where a semiconductor optical amplifier is used as the gain medium for the ring laser. Taking advantage of the bidirectional nature of the ring laser cavity, two counter-propagating waves are supported in the ring cavity. The two waves are identical in terms of their optical resonance frequency due to the reciprocity of the loop in the static position. A frequency shift is introduced between the two counter-propagating waves when the loop is subjected to an angular rotation, known as the Sagnac effect, and the magnitude of the shift is proportional to the rotation rate. Due to the multi-longitudinal mode nature of the constructed ring laser, the rotation sensor optical system parameters are optimized in a trade-off between the sensitivity and the dynamic range. Special signal processing algorithms are developed to enhance the RLG sensitivity. The performance of the RLG is evaluated using a rate table and the Allan variance of the sensor is extracted. The demonstrated RLG has an excellent linear scale factor with a dynamic range up to 40??/sec and a sensitivity down to 0.2??/sec. The RLG noise specifications as extracted from the Allan variance are a bias instability of 3??/h and an angular random walk of 0.5??/Vh.
机译:在这项工作中,我们提出了一种基于混合半导体光纤环形激光器的光学陀螺仪。所提出的光学陀螺仪是环形激光陀螺仪(RLG),其中激光腔是标准单模光纤的光纤环,其中半导体光学放大器用作环形激光器的增益介质。利用环形激光腔的双向特性,在环形腔中支撑了两个反向传播的波。由于环路在静态位置的互易性,两个波的光共振频率相同。当环路经受角旋转(称为Sagnac效应)时,会在两个反向传播的波之间引入频率偏移,并且偏移的大小与旋转速率成正比。由于构造的环形激光器的多纵向模式特性,旋转传感器光学系统参数在灵敏度和动态范围之间的权衡中得到了优化。开发了特殊的信号处理算法以增强RLG灵敏度。使用速率表评估RLG的性能,并提取传感器的Allan方差。演示的RLG具有出色的线性比例因子,动态范围高达40 ?? /秒,灵敏度低至0.2 ?? /秒。从艾伦方差中提取的RLG噪声指标为3 / h / h的偏置不稳定性和0.5 / v / Vh的角度随机游动。

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