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带有“反射器”的自激谐振光学陀螺仪:以降低成本实现高灵敏度的可能性。

Self-beating resonant optical gyroscope with a "reflector": the possibility of high sensitivities at reduced costs.

作者信息

R Sumukh Nandan, Poudyal Saroj, Srivastava Shailesh, Gowrishankar R

出版信息

Appl Opt. 2019 Mar 1;58(7):1699-1706. doi: 10.1364/AO.58.001699.

Abstract

Using simulations and theoretical analysis, we present an innovative readout technique that uses the change in a beat frequency signal for sensing rotation in the resonant fiber gyroscope with a "reflector." Unlike traditional fiber optic gyros, this gyroscope uses an embedded reflecting element that deliberately couples the clockwise and counter-clockwise propagating waves for sensing rotation. Our analytical results predict increased immunity to the degrading effects of backscattering, Kerr nonlinearities, and ambient variations at an optimum nonreciprocal bias. Using just a few meters of fiber and without requiring a very narrow-linewidth source, sensitivities below 1 deg/h along with a dynamic range greater than 10 deg/h are predicted. The technique has the potential to provide a cost-effective solution in the tactical grade.

摘要

通过模拟和理论分析,我们提出了一种创新的读出技术,该技术利用拍频信号的变化来检测带有“反射器”的谐振光纤陀螺仪中的旋转。与传统光纤陀螺仪不同,这种陀螺仪使用一个嵌入式反射元件,有意地将顺时针和逆时针传播的波耦合起来以检测旋转。我们的分析结果预测,在最佳非互易偏置下,对后向散射、克尔非线性和环境变化的退化效应的免疫力会增强。预计仅使用几米光纤且无需非常窄线宽的光源,就能实现低于1度/小时的灵敏度以及大于10度/小时的动态范围。该技术有潜力在战术级提供一种经济高效的解决方案。

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