Residual intensity modulation in resonator fiber optic gyros with sinusoidal wave phase modulation

D. Ying, Qiang Li, Hui-lian Ma, Zhong-he Jin
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引用次数: 5

Abstract

We present how residual intensity modulation (RIM) affects the performance of a resonator fiber optic gyro (R-FOG) through a sinusoidal wave phase modulation technique. The expression for the R-FOG system’s demodulation curve under RIM is obtained. Through numerical simulation with different RIM coefficients and modulation frequencies, we find that a zero deviation is induced by the RIM effect on the demodulation curve, and this zero deviation varies with the RIM coefficient and modulation frequency. The expression for the system error due to this zero deviation is derived. Simulation results show that the RIM-induced error varies with the RIM coefficient and modulation frequency. There also exists optimum values for the RIM coefficient and modulation frequency to totally eliminate the RIM-induced error, and the error increases as the RIM coefficient or modulation frequency deviates from its optimum value; however, in practical situations, these two parameters would not be exactly fixed but fluctuate from their respective optimum values, and a large system error is induced even if there exists a very small deviation of these two critical parameters from their optimum values. Simulation results indicate that the RIM-induced error should be considered when designing and evaluating an R-FOG system.
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正弦波相位调制谐振腔光纤陀螺的剩余强度调制
本文介绍了剩余强度调制(RIM)如何通过正弦波相位调制技术影响谐振式光纤陀螺(R-FOG)的性能。得到了在RIM条件下R-FOG系统的解调曲线表达式。通过不同RIM系数和调制频率下的数值模拟,我们发现RIM效应对解调曲线产生了一个零偏差,并且这个零偏差随RIM系数和调制频率的变化而变化。推导了由于该零偏差引起的系统误差表达式。仿真结果表明,RIM诱导误差随RIM系数和调制频率的变化而变化。RIM系数和调制频率也存在能完全消除RIM误差的最优值,RIM系数或调制频率偏离其最优值时,误差增大;但在实际情况下,这两个关键参数并不会完全固定,而是会在各自的最优值上下波动,即使这两个关键参数与最优值存在很小的偏差,也会引起较大的系统误差。仿真结果表明,在设计和评估R-FOG系统时,应考虑到环致误差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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