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Current modulation technique used in resonator micro-optic gyro

机译:谐振器微陀螺仪中的电流调制技术

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Resonator micro-optic gyro (RMOG) is a promising candidate for the next generation inertial rotation sensor based on the Sagnac effect. A current modulation technique used in an external cavity laser diode is proposed to construct the gyroscope system for the first time. The resonance curves before and after eliminating accompanying amplitude modulation are theoretically analyzed, calculated, and simulated; the demodulation curves with different modulation currents are formulated theoretically; and the optimum modulation current corresponding to the maximum sensitivity is obtained. The experiment results from the established RMOG experimental setup demonstrate that a bias stability of 2.7 deg/s (10 s integrated time) over 600 s, and dynamic range of ±500 deg/s are demonstrated in an RMOG with a silica optical waveguide ring resonator having a ring length of 12.8 cm.
机译:共振微光学陀螺仪(RMOG)是基于Sagnac效应的下一代惯性旋转传感器的有希望的候选者。提出了一种在外腔激光二极管中使用的电流调制技术来首次构建陀螺仪系统。从理论上分析,计算和模拟了消除伴随的幅度调制之前和之后的共振曲线;从理论上给出了调制电流不同时的解调曲线。得到与最大灵敏度相对应的最佳调制电流。来自已建立的RMOG实验装置的实验结果表明,在具有石英光波导环形谐振器的RMOG中,在600 s内的偏置稳定性为2.7度/秒(10 s积分时间),动态范围为±500度/ s。戒指长度为12.8厘米。

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