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首页> 外文期刊>Optics Letters >Birefringence dispersion compensation demodulation algorithm for polarized low-coherence interferometry
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Birefringence dispersion compensation demodulation algorithm for polarized low-coherence interferometry

机译:偏振低相干干涉术的双折射色散补偿解调算法

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摘要

A demodulation algorithm based on the birefringence dispersion characteristics for a polarized low-coherence interferometer is proposed. With the birefringence dispersion parameter taken into account, the mathematical model of the polarized low-coherence interference fringes is established and used to extract phase shift information between the measured coherence envelope center and the zero-order fringe, which eliminates the interferometric 2π ambiguity of locating the zero-order fringe. A pressure measurement experiment using an optical fiber Fabry-Perot pressure sensor was carried out to verify the effectiveness of the proposed algorithm. The experiment result showed that the demodulation precision was 0.077 kPa in the range of 210 kPa, which was improved by 23 times compared to the traditional envelope detection method.
机译:提出了一种基于双折射色散特性的偏振低相干干涉仪解调算法。考虑到双折射色散参数,建立了偏振低相干干涉条纹的数学模型,并将其用于提取测得的相干包络中心和零阶条纹之间的相移信息,从而消除了干涉式2π定位的歧义零阶条纹。进行了使用光纤Fabry-Perot压力传感器的压力测量实验,以验证所提出算法的有效性。实验结果表明,在210 kPa范围内,解调精度为0.077 kPa,比传统的包络检测方法提高了23倍。

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