2008Unpublished venueRequires access

A phase modulation method for improving the scale factor stability of Fiber-Optic Gyroscope

Shitong Chen, Jianhua Cheng, Wei Gao

Open publisher page 11 citations

Abstract

The usual scheme of Fiber-Optic Gyroscope(FOG) is digital single closed-loop, but the scale factor stability is affected by the variation of half-wave voltage of LiNbO3integrated optic phase modulator. The half-wave voltage changes with the variation of the integrated optic phase modulator performance dependence on temperature and the bias voltage applied to the phase modulator. In order to improve the scale factor stability, double closed-loop scheme FOG with square wave bias modulation is used to compensate the the variation of half-wave voltage, but it is inefficient at low rates. The double closed-loop scheme FOG with “four-bias-state” bias modulation is used to improve the compensation efficiency and SNR, and the bias modulation equations are presented here. The scale factor stability of the new scheme is improved about by one time than the usual scheme.

About this research paper

What this paper is about

The usual scheme of Fiber-Optic Gyroscope(FOG) is digital single closed-loop, but the scale factor stability is affected by the variation of half-wave voltage of LiNbO3integrated optic phase modulator. The half-wave voltage changes with the variation of the integrated optic phase modulator performance dependence on temperature and the bias voltage applied to the phase modulator. In order to improve the scale factor stability, double closed-loop scheme FOG with square wave bias modulation is used to compensate the the variation of half-wave voltage, but it is inefficient at low rates. The double closed-loop scheme FOG with “four-bias-state” bias modulation is used to improve the compensation efficiency and SNR, and the bias modulation equations are presented here. The scale factor stability of the new scheme is improved about by one time than the usual scheme.

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OpenAlex reports 11 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The usual scheme of Fiber-Optic Gyroscope(FOG) is digital single closed-loop, but the scale factor stability is affected by the variation of half-wave voltage of LiNbO3integrated optic phase modulator. The half-wave voltage changes with the variation of the integrated optic phase modulator performance dependence on temperature and the bias voltage applied to the phase modulator. In order to improve the scale factor stability, double closed-loop scheme FOG with square wave bias modulation is used to compensate the the variation of half-wave voltage, but it is inefficient at low rates. The double closed-loop scheme FOG with “four-bias-state” bias modulation is used to improve the compensation efficiency and SNR, and the bias modulation equations are presented here. The scale factor stability of the new scheme is improved about by one time than the usual scheme.

Key concepts: Fibre optic gyroscope, Gyroscope, Scale factor (cosmology), Modulation (music), Phase modulation, Optical fiber, Scale (ratio), Stability (learning theory)

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