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Theory of an amplified closed-Sagnac-loop interferometric fiber optic gyroscope

机译:放大的Sagnac闭环干涉光纤陀螺仪原理

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Abstract: An Amplified Closed-Sagnac Loop Interferometric Fiber Optic Gyroscope (AC-IFOG) has been proposed. It is constructed from an open-loop interferometric fiber-optic gyroscope with an erbium-doped fiber amplifier (EDFA) that closes the sensing coil into a re-entrant configuration. Earlier experiments have shown a 6.56 fold increase in rotation response factor at a rate of 5 degrees over a conventional gyroscope using the same fiber length and light source. This paper reports the theoretical analysis of its operation. The analysis has been focused on the effect of the EDFA inserted within the re-entrant path. The analysis shows that the rotation detection factor can be increased by at least two orders as compared to a conventional IFOG when the EDFA is an ideal device. A mathematical expression for the open-loop response has been derived and it agrees well with the experiment result. !12
机译:摘要:提出了一种封闭的Sagnac环路干涉式光纤陀螺仪(AC-IFOG)。它是由带掺b光纤放大器(EDFA)的开环干涉式光纤陀螺仪构成的,该放大器将感应线圈闭合成凹入结构。较早的实验表明,与使用相同光纤长度和光源的常规陀螺仪相比,旋转响应因子以5度的速率增加了6.56倍。本文报告了其操作的理论分析。分析的重点是插入重入路径中的EDFA的效果。分析表明,当EDFA是理想设备时,与传统的IFOG相比,旋转检测因子可以增加至少两个数量级。推导了开环响应的数学表达式,与实验结果吻合良好。 !12

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