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Noise Analysis of a Passive Resonant Laser Gyroscope

机译:无源谐振激光陀螺仪的噪声分析

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摘要

Large-scale laser gyroscopes have found important applications in Earth sciences due to their self-sufficient property of measurement of the Earth’s rotation without any external references. In order to extend the relative rotation measurement accuracy to a better level so that it can be used for the determination of the Earth orientation parameters (EOP), we investigate the limitations in a passive resonant laser gyroscope (PRG) developed at Huazhong University of Science and Technology (HUST) to pave the way for future development. We identify the noise sources from the derived noise transfer function of the PRG. In the frequency range below 10−2Hz, the contribution of free-spectral-range (FSR) variation is the dominant limitation, which comes from the drift of the ring cavity length. In the 10−2 to 103Hz frequency range, the limitation is due to the noises of the frequency discrimination system, which mainly comes from the residual amplitude modulation (RAM) in the frequency range below 2 Hz. In addition, the noise contributed by the Mach–Zehnder-type beam combiner is also noticeable in the 0.01 to 2 Hz frequency range. Finally, possible schemes for future improvement are also discussed.
机译:由于它们在没有任何外部参考的情况下,大规模激光陀螺仪在地球科学中发现了重要应用。为了使相对旋转测量精度延伸到更好的水平,使其可用于确定地球取向参数(EOP),我们研究了在华中科学大学开发的被动谐振激光陀螺(PRG)中的限制和技术(赫斯特)为未来发展铺平了道路。我们从PRG的推导噪声传递函数中识别噪声源。在低于10-2Hz的频率范围内,自由光谱范围(FSR)变化的贡献是主导限制,这来自环腔长度的漂移。在10-2到103Hz的频率范围内,限制是由于频率辨别系统的噪声,主要来自2Hz的频率范围内的剩余幅度调制(RAM)。此外,由Mach-Zehnder型光束组合器贡献的噪声在0.01至2 Hz频率范围内也是明显的。最后,还讨论了未来改进的可能计划。

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