Qian Heng, Luo Bin, He Haijun, Zhou Yin, Zou Xihua, Pan Wei, Yan Lianshan
Appl Opt. 2022 Aug 10;61(23):6729-6735. doi: 10.1364/AO.463145.
In phase-sensitive optical time domain reflectometry (-), false phase peaks caused by interference fading have been observed experimentally; however, the statistical law has not yet been disclosed. In this work, after clarifying that the false phase peaks originate from the phase hopping of demodulated phase noise during the unwinding process, we define the phase hopping rate (PHR) to evaluate the degree of fading and study the quantitative relationship between the PHR and signal-to-noise ratio (SNR) of the measured signal through theoretical derivation and experimental verification. In addition, a moving rotated-vector-average (MRVA) method is proposed to suppress the fading and eliminate the false phase peaks. In the experiment, after MRVA processing with a 25 ns sliding window, the lowest SNR is pulled from 0.003 to 14.9, and the corresponding PHR is reduced from 0.237 to less than 0.0001, which is consistent with the theoretical analysis.
在相敏光时域反射仪(-)中,由干涉衰落引起的虚假相位峰值已通过实验观测到;然而,其统计规律尚未被揭示。在这项工作中,在明确虚假相位峰值源于解缠过程中解调相位噪声的相位跳变之后,我们定义相位跳变率(PHR)来评估衰落程度,并通过理论推导和实验验证研究PHR与被测信号信噪比(SNR)之间的定量关系。此外,提出了一种移动旋转矢量平均(MRVA)方法来抑制衰落并消除虚假相位峰值。在实验中,使用25 ns滑动窗口进行MRVA处理后,最低SNR从0.003提升至14.9,相应的PHR从0.237降低至小于0.0001,这与理论分析一致。