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Terrestrial laser scanning and continuous wavelet transform for controlling surface flatness in construction - A first investigation

机译:地面激光扫描和连续小波变换控制建筑表面平整度的初步研究

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We propose a novel approach to surface flatness characterization in construction that relies on the combination of Terrestrial Laser Scanning (TLS) and the Continuous Wavelet Transform (CWT). The former has the advantage over existing measurement technologies of providing both accurate and extremely dense measurements over surfaces. The latter provides the means to conduct frequency analysis with high resolution in both the spatial and frequency domains. This novel approach is tested using two real concrete floors and the results compared with those obtained with the Waviness Index method. The results show a high level of correlation. In fact, the proposed approach delivers a higher level of precision in the frequency and spatial domains. We also show what seems to be a weakness of the Waviness Index method in the detection of undulations with short periods. Finally, although not experimentally demonstrated here, the proposed method has the interesting additional advantage of being applicable in 2D, that is over an entire surface instead of sampled survey lines (1D).
机译:我们提出了一种新的结构表面平整度表征方法,该方法依赖于地面激光扫描(TLS)和连续小波变换(CWT)的结合。与现有的测量技术相比,前者具有在表面上提供准确且极其密集的测量的优势。后者提供了在空间和频域中进行高分辨率频率分析的方法。这种新颖的方法在两个真实的混凝土地板上进行了测试,并将结果与​​“波纹度指数”方法进行了比较。结果显示出高度的相关性。实际上,所提出的方法在频域和空间域中提供了更高的精度。我们还显示了在短期内检测波动时,波度指数法的弱点。最后,尽管此处未进行实验证明,但所提出的方法还有一个有趣的附加优点:适用于2D,而不是采样的测量线(1D),可用于整个表面。

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