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采用短而高精细度光纤环形谐振器的谐振式微光陀螺仪。

Resonant micro-optic gyro using a short and high-finesse fiber ring resonator.

作者信息

Ma Huilian, Zhang Jianjie, Wang Linglan, Lu Ying, Ying Diqing, Jin Zhonghe

出版信息

Opt Lett. 2015 Dec 15;40(24):5862-5. doi: 10.1364/OL.40.005862.

Abstract

A novel hybrid integrated scheme is proposed for a high-performance resonant micro-optic gyro (RMOG), which requires a low-loss micro-ring resonator for mass production. A new record for the RMOG is established experimentally with a short fiber ring resonator and an integrated signal detecting and processing circuit. The finesse of the short fiber ring resonator with a length of 60 cm and a diameter of 4.77 cm is as high as 202, and the theoretical sensitivity of the RMOG is better than 0.3°/h assuming the average optical intensity at the photodetector is 1 mW. The 60 cm long spliceless micro-ring resonator is experimentally proved to be sufficient for a tactical-grade RMOG. An angle random walk coefficient of 0.64°/√h and a typical bias stability below 9.6°/h for the integration time of 50 s are successfully demonstrated using an innovative open-loop approach for an operation time of 1600 s.

摘要

针对高性能谐振式微光陀螺仪(RMOG)提出了一种新型混合集成方案,该方案需要用于大规模生产的低损耗微环谐振器。通过短光纤环形谐振器和集成信号检测与处理电路,在实验中创造了RMOG的新纪录。长度为60厘米、直径为4.77厘米的短光纤环形谐振器的精细度高达202,假设光电探测器处的平均光强为1毫瓦,RMOG的理论灵敏度优于0.3°/小时。实验证明,60厘米长的无缝微环谐振器足以用于战术级RMOG。使用创新的开环方法在1600秒的运行时间内,成功展示了50秒积分时间下0.64°/√小时的角度随机游走系数和低于9.6°/小时的典型偏置稳定性。

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