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A technology for sewer pipe inspection (part 1): Design, calibration, corrections and potential application of a laser profiler

机译:下水道检查技术(第1部分):激光轮廓仪的设计,校准,更正和潜在应用

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摘要

In order to ensure and extend the serviceability of sewage infrastructure, sewer managers need more accurate data to estimate its actual state. For that purpose, various inspection techniques can be implemented. A first prototype of an unbiased laser profiler was developed to improve the accuracy of collected data (Clemens, Stanic, Van der Schoot, Langeveld, Lepot, 2015). However, a higher accuracy needs to be achieved. This article presents the results of an improved prototype that delivers an increase in the measuring accuracy of 5-10 times, which was achieved by using more accurate equipment (lasers and cameras) and by improvements in the methodologies applied (e.g. removing the last bias image distortion by camera calibration). The new design presented hereafter provides accurate measurements (sigma<2 mm) of cross section and accurate 3D linage of a pipe. The potential applications of the improved laser profiling technique are comprehensive: e.g. deposit measurements, roughness measurements. (C) 2016 Elsevier B.V. All rights reserved.
机译:为了确保并扩展污水处理基础设施的可服务性,下水道管理者需要更准确的数据来估计其实际状态。为此,可以实施各种检查技术。开发了无偏激光轮廓仪的第一个原型,以提高收集数据的准确性(Clemens,Stanic,Van der Schoot,Langeveld,Lepot,2015年)。但是,需要实现更高的精度。本文介绍了改进的原型的结果,该原型的测量精度提高了5-10倍,这是通过使用更精确的设备(激光和照相机)以及所用方法的改进(例如,删除最后的偏差图像)实现的。相机校准造成的失真)。下文介绍的新设计可提供横截面的精确测量值(sigma <2 mm)和管道的精确3D线性。改进的激光轮廓分析技术的潜在应用是全面的:沉积物测量,粗糙度测量。 (C)2016 Elsevier B.V.保留所有权利。

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