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Suppression of backscattering-induced noise by sideband locking based on high and low modulation frequencies in ROG

机译:基于高低调制频率的罗格遥控锁定抑制反向散射噪声

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摘要

Backscattering-induced noise is a dominant noise in a resonant optic gyroscope (ROG). This paper proposes a method to suppress the carrier and backscattering-induced noise with a sideband locking technique. The resonant cavity can be taken as a band-pass filter, and the carrier frequency component can be located at the stop-band while one sideband is locked to the cavity resonance. Then, the carrier will be suppressed by the cavity itself, which will reduce the interference with carrier backscattering. For the adoption of different modulation frequencies in clockwise (CW) and counter-clockwise (CCW) directions, the first-order sidebands of CW and CCW have a frequency offset to each other. Therefore, the first-order sideband backscattering can be eliminated when the sideband is locked to the cavity resonance. Also, both high and low modulation frequencies are applied to the phase modulator, which will further suppress the carrier, and the demodulation of low frequency will reduce the sensitivity to phase fluctuation noise in the system. The method has low requirements for parameter accuracy or device performance. (C) 2018 Optical Society of America
机译:反向散射诱导的噪声是谐振光学陀螺(罗格)中的主要噪声。本文提出了一种用边带锁定技术抑制载波和反向散射噪声的方法。谐振腔可以作为带通滤波器,并且载波频率分量可以位于止动带处,而一个边带锁定到腔谐振。然后,载体将被空腔自身抑制,这将减少与载波反向散射的干扰。为了采用顺时针(CW)和逆时针(CCW)方向的不同调制频率,CW和CCW的一阶边带彼此具有频率偏移。因此,当向侧带锁定到腔谐振时,可以消除一阶边带反向散射。而且,高和低调制频率都施加到相位调制器,这将进一步抑制载波,并且低频的解调将降低系统中相位波动噪声的灵敏度。该方法对参数精度或设备性能的要求很低。 (c)2018年光学学会

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  • 来源
    《Applied optics》 |2018年第26期|共7页
  • 作者单位

    Beihang Univ Sch Instrumentat Sci &

    Optoelect Engn Beijing 100191 Peoples R China;

    Beihang Univ Sch Instrumentat Sci &

    Optoelect Engn Beijing 100191 Peoples R China;

    Beihang Univ Sch Instrumentat Sci &

    Optoelect Engn Beijing 100191 Peoples R China;

    Beihang Univ Sch Instrumentat Sci &

    Optoelect Engn Beijing 100191 Peoples R China;

    Beihang Univ Sch Instrumentat Sci &

    Optoelect Engn Beijing 100191 Peoples R China;

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  • 正文语种 eng
  • 中图分类 应用;
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