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Excess relative intensity noise suppression in depolarized interferometric fiber optic gyroscopes

机译:去极化干涉光纤陀螺仪中的过多的相对强度噪声抑制

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摘要

Excess relative intensity noise (excess RIN) is one of the major factors that degrade the short-term performance of interferometric fiber optic gyroscopes (IFOGs). We theoretically and experimentally investigate the correlation of excess RIN between interferometric and reference signals in depolarized IFOGs in which single-mode fiber coils are adopted to make them cost-effective. The Lyot depolarizers decrease the correlation coefficient to about 81%, giving a lower limit that excess RIN can be suppressed to 59%. Then, an excess RIN suppression method by co-processing interferometric and reference signals electronically is proposed that works well with the open-loop demodulation. Experimental results show the proposed method compensates the excess RIN to 60.4% compared to original, almost achieve the noise limit of the depolarized configuration.
机译:过度的相对强度噪声(过量rin)是降低干涉纤维光学陀螺仪(IFOG)的短期性能的主要因素之一。 理论上,通过实验研究了在去极化的IFOG中的干涉式和参考信号之间过量rin之间的相关性的相关性,其中采用单模光纤线圈使它们具有成本效益。 Lyot DepoRarizers将相关系数降低至约81%,给出过量rin的下限可以抑制到59%。 然后,提出了通过共处理干涉测量和参考信号的过量的载体抑制方法,其与开环解调有关。 实验结果表明,与原版相比,该方法补偿了多余的载体至60.4%,几乎达到了去极化配置的噪声极限。

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