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首页> 外文期刊>Journal of Lightwave Technology >Maximum Likelihood Estimation of Optical Path Length in Spectral Interferometry
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Maximum Likelihood Estimation of Optical Path Length in Spectral Interferometry

机译:光谱干涉法中光程长度的最大似然估计

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摘要

Optical path length demodulation is a subject of fundamental importance in spectral interferometry applications. We propose an algorithm based on maximum likelihood estimation to achieve absolute optical path length demodulation with high sensitivity and noise resistance and to elucidate the cause and behavior of undesirable demodulation discontinuity. From an interference spectrum model with additive Gaussian noise, a maximum likelihood estimator is derived in Fourier domain to determine the optical path length. To assess its sensitivity performance, the Cramer-Rao bound of sensitivity is derived from Fisher information matrix. By simulations and experimental validations, the proposed method demonstrates its capability of achieving the Cramer-Rao bound over a large dynamic range of optical path lengths, initial phases, and signal-to-noise ratios. When compared with some state-of-the-art demodulation methods, it also demonstrates improved resistance to demodulation jumps at low signal-to-noise ratios. Importantly, the mechanism of such jumps can be readily explained from a new, intuitive perspective, which may permit the quantification of jump occurrences in the future.
机译:在光谱干涉测量应用中,光程长度解调是最重要的主题。我们提出一种基于最大似然估计的算法,以实现具有高灵敏度和抗噪声能力的绝对光程长度解调,并阐明不良解调不连续的原因和行为。从具有加性高斯噪声的干涉谱模型中,在傅立叶域中得出最大似然估计器,以确定光程长度。为了评估其灵敏度性能,从Fisher信息矩阵中得出灵敏度的Cramer-Rao界。通过仿真和实验验证,所提出的方法证明了其在较大的光程长度,初始相位和信噪比的动态范围内达到Cramer-Rao界的能力。与某些最新的解调方法相比,它还展示了在低信噪比下对解调跳变的改进抵抗力。重要的是,可以从一个新的,直观的角度很容易地解释这种跳跃的机制,这可能会在将来量化跳跃的发生。

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