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使用迭代加权椭圆特定拟合的改进型基于3×3耦合器的解调算法

Ameliorated 3 × 3 coupler-based demodulation algorithm using iteratively reweighted ellipse specific fitting.

作者信息

Gu Shaojie, Zhang Gang, Ge Qiang, Xu Linguang, Wu Xuqiang, Yu Benli

出版信息

Opt Express. 2024 Jan 15;32(2):1108-1122. doi: 10.1364/OE.501258.

Abstract

Passive demodulation scheme using 3 × 3 coupler has been widely used in phase-sensitive optical time-domain reflectometry (φ-OTDR), interrogation of fiber Bragg gratings or fiber optic interferometric sensors, and sensor multiplexing. However, the asymmetry of the 3 × 3 coupler in real applications affects the demodulation performance seriously. We proposed an ameliorated 3 × 3 coupler-based demodulation algorithm using iteratively reweighted ellipse specific fitting (IRESF) to overcome the drawback. IRESF combines iterative reweight technology with ellipse specific fitting, which decreases the weights of high noise points and always outputs ellipse solutions. Any two output signals from the 3 × 3 coupler-based interferometer are fitted by the IRESF and then corrected as a pair of quadrature signals. The stability of the fitting parameters is utilized to resolve the failures of IRESF under small signals. A real-time 1/4 ellipse arc judging module is designed, if the Lissajous figure is larger than 1/4 ellipse arc, IRESF is executed to offer ellipse correction parameters. Otherwise, the fixed parameters preset in the algorithm are used. The fixed parameters are mean values of the fitting parameters of IRESF under a large stimulus. The desired phase signal is finally extracted from the corrected quadrature signals. Experimental results show that the ameliorated algorithm does not require strict symmetry of the 3 × 3 coupler and can work under small signals. The noise floor of the proposed algorithm is -112 dB re rad/√Hz and the demodulated amplitude is 23.15 dB (14.37 rad) at 1 kHz when THD is 0.0488%. Moreover, the response linearity is as high as 99.999%. Compared to the algorithm using direct least squares, the proposed demodulation algorithm is more robust and precise, which has broad application prospects.

摘要

使用3×3耦合器的被动解调方案已广泛应用于相敏光时域反射仪(φ-OTDR)、光纤布拉格光栅或光纤干涉传感器的询问以及传感器复用。然而,实际应用中3×3耦合器的不对称性严重影响了解调性能。我们提出了一种基于改进的3×3耦合器的解调算法,使用迭代加权椭圆特定拟合(IRESF)来克服这一缺点。IRESF将迭代加权技术与椭圆特定拟合相结合,降低了高噪声点的权重并始终输出椭圆解。基于3×3耦合器的干涉仪的任意两个输出信号由IRESF进行拟合,然后校正为一对正交信号。利用拟合参数的稳定性来解决IRESF在小信号下的失效问题。设计了一个实时1/4椭圆弧判断模块,如果李萨如图形大于1/4椭圆弧,则执行IRESF以提供椭圆校正参数。否则,使用算法中预设的固定参数。固定参数是大激励下IRESF拟合参数的平均值。最终从校正后的正交信号中提取所需的相位信号。实验结果表明,改进后的算法不需要3×3耦合器严格对称,并且可以在小信号下工作。所提算法的本底噪声为-112 dB re rad/√Hz,在1 kHz时,当总谐波失真(THD)为0.0488%时,解调幅度为23.15 dB(14.37 rad)。此外,响应线性度高达99.999%。与使用直接最小二乘法的算法相比,所提解调算法更稳健、精确,具有广阔的应用前景。

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