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Narrow-Band Frequency Analysis for Laser-Based Glass Thickness Measurement

机译:窄带频率分析用于基于激光的玻璃厚度测量

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摘要

This paper presents a narrow-band frequency analysis approach for a new laser interferometric heterodyne system, which is used for noncontact glass bottle wall thickness measurement. The measurement signal consists of a number of spectral components, the strongest of which is a reliable representation of the above-mentioned thickness. A fast method for searching and locating this frequency is vital for real-time implementations. As the standard fast Fourier transform (FFT) proved to be ineffective for the given problem, we use a combination of a zero-padding discrete Fourier transform (DFT) with a coarse-to-fine technique to locate this frequency at a smaller processing cost. Considering also the Chirp-z transform, a comparison of the different methods under investigation demonstrates the effectiveness of the proposed approach for online thickness estimation.
机译:本文提出了一种用于新型激光干涉外差系统的窄带频率分析方法,该系统用于非接触式玻璃瓶壁厚测量。测量信号由许多光谱成分组成,其中最强的是上述厚度的可靠表示。快速搜索和定位该频率的方法对于实时实现至关重要。由于标准快速傅立叶变换(FFT)对于给定的问题被证明是无效的,因此我们将零填充离散傅立叶变换(DFT)与粗糙到精细的技术结合使用,以较低的处理成本来定位此频率。还考虑了Chirp-z变换,正在研究的不同方法的比较证明了所提出的在线厚度估计方法的有效性。

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