Zhang Tao, Gao Feng, Muhamedsalih Hussam, Lou Shan, Martin Haydn, Jiang Xiangqian
Appl Opt. 2018 Mar 20;57(9):2227-2234. doi: 10.1364/AO.57.002227.
The phase slope method which estimates height through fringe pattern frequency and the algorithm which estimates height through the fringe phase are the fringe analysis algorithms widely used in interferometry. Generally they both extract the phase information by filtering the signal in frequency domain after Fourier transform. Among the numerous papers in the literature about these algorithms, it is found that the design of the filter, which plays an important role, has never been discussed in detail. This paper focuses on the filter design in these algorithms for wavelength scanning interferometry (WSI), trying to optimize the parameters to acquire the optimal results. The spectral characteristics of the interference signal are analyzed first. The effective signal is found to be narrow-band (near single frequency), and the central frequency is calculated theoretically. Therefore, the position of the filter pass-band is determined. The width of the filter window is optimized with the simulation to balance the elimination of the noise and the ringing of the filter. Experimental validation of the approach is provided, and the results agree very well with the simulation. The experiment shows that accuracy can be improved by optimizing the filter design, especially when the signal quality, i.e., the signal noise ratio (SNR), is low. The proposed method also shows the potential of improving the immunity to the environmental noise by adapting the signal to acquire the optimal results through designing an adaptive filter once the signal SNR can be estimated accurately.
通过条纹图案频率估计高度的相位斜率法以及通过条纹相位估计高度的算法是干涉测量中广泛使用的条纹分析算法。通常,它们都是在傅里叶变换后通过频域滤波来提取相位信息。在众多关于这些算法的文献中发现,起着重要作用的滤波器设计从未被详细讨论过。本文聚焦于波长扫描干涉测量(WSI)中这些算法的滤波器设计,试图优化参数以获得最优结果。首先分析了干涉信号的频谱特性。发现有效信号为窄带(接近单频),并从理论上计算了中心频率。因此,确定了滤波器通带的位置。通过仿真优化了滤波器窗口的宽度,以平衡噪声消除和滤波器的振铃现象。提供了该方法的实验验证,结果与仿真非常吻合。实验表明,通过优化滤波器设计可以提高精度,特别是当信号质量,即信噪比(SNR)较低时。所提出的方法还表明,一旦能够准确估计信号SNR,通过设计自适应滤波器使信号自适应以获得最优结果,就有提高对环境噪声免疫力的潜力。