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首页> 外文期刊>Applied optics >Speckle-insensitive fringe detection method based on Hilbert transform for self-mixing interferometry
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Speckle-insensitive fringe detection method based on Hilbert transform for self-mixing interferometry

机译:基于希尔伯特变换的自混合干涉法斑点不敏感条纹检测方法

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摘要

A robust phase measurement method to detect self-mixing signals from rough surface targets is addressed. Using the Hilbert transform to create the analytic signal of the monitored optical output power, an accurate instantaneous phase can be extracted without being affected by amplitude variations induced by the speckle phenomenon. In case of fringe fading, a running average filter removes the local bias offset improving the calculations. This also allows one to observe the phase at dynamic feedback levels within the same calculation, avoiding the need of adding external optical, mechanical or electronic components. This method provides confidence for the fringe detection required in subsequent steps to reach subwavelength precision of a reconstructed displacement or for velocimetry applications.
机译:提出了一种可靠的相位测量方法,可以检测来自粗糙表面目标的自混合信号。使用希尔伯特变换来创建所监视的光输出功率的分析信号,可以提取准确的瞬时相位,而不受散斑现象引起的幅度变化的影响。如果出现边缘衰减,则运行平均滤波器会消除局部偏置偏移,从而改善计算效果。这也使人们能够在同一计算中以动态反馈水平观察相位,而无需增加外部光学,机械或电子组件。该方法为后续步骤达到重建位移的亚波长精度所需的条纹检测或测速应用提供了信心。

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