陀螺仪
光纤陀螺
干涉测量
小型化
物理
极化(电化学)
光学
谐振器
速率积分陀螺仪
萨格纳克效应
光纤
电子工程
声学
工程类
电气工程
振动结构陀螺仪
化学
物理化学
量子力学
作者
K. A. Ovchinnikov,Д. Г. Гилев,В. В. Криштоп,Anatoliy B. Volyntsev,Vitaliy A. Maximenko,Alexey A. Garkushin,Yurii V. Filatov,Alexander S. Kukaev,Alexander Sevryugin,Egor V. Shalymov,Anastasiya V. Venediktova,Vladimir Y. Venediktov
出处
期刊:Sensors
[Multidisciplinary Digital Publishing Institute]
日期:2023-01-24
卷期号:23 (3): 1319-1319
被引量:5
摘要
Reducing the dimensions of optical gyroscopes is a crucial task and resonant fiber optic gyroscopes are promising candidates for its solution. The paper presents a prototype of a miniature resonant interferometric gyroscope of a strategic accuracy class. Due to the use of passive optical elements in this gyroscope, it has a great potential for miniaturization, alongside a low production cost and ease of implementation, since it does not require many feedback loops. The presented prototype shows results on a zero instability of 20°/h and an angle random walk of 0.16°/√h. A theoretical model explaining the nature of the multipath interference of resonant spectra and establishing the relationship between the resonator parameters and the output parameters of the presented prototype is proposed. The results predicted are in agreement with the experimental data. The prototype gyroscope demonstrates a scale factor instability and a change in the average signal level, which is due to the presence of polarization non-reciprocity, occurring due to the induced birefringence in the single-mode fiber of the contour. This problem requires further investigation to be performed.
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