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Research on the Frequency-Dependent Halfwave Voltage of a Multifunction Integrated Optical Chip in an Interferometric Fiber Optic Gyroscope

机译:干涉式光纤陀螺仪中多功能集成光学芯片的频率相关半波电压研究

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摘要

The multifunction integrated optical chip (MIOC) is one of the most critical parts of the interferometric fiber optic gyroscope (IFOG), and research on the halfwave voltage of the MIOC is meaningful for a high-precision IFOG. In this paper, the correlation between the frequency and halfwave voltage, which affects the interference light intensity of IFOG, is presented theoretically. A widespread measurement method for frequency dependence of the halfwave voltage, based on lock-in amplification and sinusoidal modulation, is proposed. Further, the measurement result and the oscillation of interference light intensity in the Sagnac interferometer are presented, which are in great agreement with the theory. This paper proposes the frequency dependence of the halfwave voltage and provides a new error research direction for the improvement of the MIOC in a high-precision IFOG.
机译:多功能集成光学芯片(MIOC)是干涉式光纤陀螺仪(IFOG)的最关键部分之一,对MIOC半波电压的研究对于高精度IFOG具有重要意义。从理论上给出了影响IFOG干涉光强度的频率与半波电压之间的相关性。提出了一种基于锁相放大和正弦调制的半波电压频率依赖性测量方法。此外,提出了Sagnac干涉仪中的测量结果和干涉光强度的振荡,与理论相吻合。提出了半波电压的频率依赖性,为高精度IFOG中MIOC的改进提供了新的误差研究方向。

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