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An open-loop RFOG based on harmonic division technique to suppress LD's intensity modulation noise

机译:基于谐波分割技术的开环RFOG抑制LD的强度调制噪声

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摘要

A harmonic division technique is proposed for an open-loop resonator fiber optic gyro (RFOG) to suppress semiconductor laser diode's (LD's) intensity modulation noise. The theoretical study indicates the RFOG with this technique is immune to the intensity noise. The simulation and experimental results show this technique would lead to a diminished linear region, which still could be acceptable for an RFOG applied to low rotation rate detection. The tests for the gyro output signal are carried out with/ without noise suppressing methods, including the harmonic division technique and previously proposed signal compensation technique. With the harmonic division technique at the rotation rate of 10 deg/s, the stability of gyro output signal is improved from 1.07 deg/s to 0.0361 deg/s, whose noise suppressing ratio is more than 3 times as that of the signal compensation technique. And especially, a 3.12 deg/s signal jump is significantly removed with the harmonic division technique; in contrast, a residual 0.36 deg/s signal jump still exists with the signal compensation technique. It is concluded the harmonic division technique does work in intensity noise suppressing under dynamic condition, and it is superior to the signal compensation technique. (C) 2016 Elsevier B.V. All rights reserved.
机译:提出了一种谐波分割技术,用于开环谐振器光纤陀螺(RFOG),以抑制半导体激光二极管(LD)的强度调制噪声。理论研究表明,采用该技术的RFOG不受强度噪声的影响。仿真和实验结果表明,该技术将导致线性区域减小,这对于应用于低转速检测的RFOG仍然可以接受。对陀螺仪输出信号的测试在有无噪声抑制方法的情况下进行,包括谐波分频技术和先前提出的信号补偿技术。使用谐波分割技术,转速为10度/秒时,陀螺仪输出信号的稳定性从1.07度/秒提高至0.0361度/秒,其噪声抑制率是信号补偿技术的3倍以上。尤其是谐波分离技术可显着消除3.12度/秒的信号跳变。相比之下,信号补偿技术仍然存在0.36度/秒的残留信号跳变。得出结论,谐波分割技术确实可以在动态条件下抑制强度噪声,并且优于信号补偿技术。 (C)2016 Elsevier B.V.保留所有权利。

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