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A Review of Three-Dimensional Imaging Technologies for Pavement Distress Detection and Measurements

机译:路面破损检测与测量的三维成像技术综述

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摘要

With the ever-increasing emphasis on maintaining road assets to a high standard, the need for fast accurate inspection for road distresses is becoming extremely important. Surface distresses on roads are essentially three dimensional (3-D) in nature. Automated visual surveys are the best option available. However, the imaging conditions, in terms of lighting, etc., are very random. For example, the challenge of measuring the volume of the pothole requires a large field of view with a reasonable spatial resolution, whereas microtexture evaluation requires very accurate imaging. Within the two extremes, there is a range of situations that require 3-D imaging. Three-dimensional imaging consists of a number of techniques such as interferometry and depth from focus. Out of these, laser imagers are mainly used for road surface distress inspection. Many other techniques are relatively unknown among the transportation community, and industrial products are rare. The main impetus for this paper is derived from the rarity of 3-D industrial imagers that employ alternative techniques for use in transportation. In addition, the need for this work is also highlighted by a lack of literature that evaluates the relative merits/demerits of various imaging methods for different distress measurement situations in relation to pavements. This overview will create awareness of available 3-D imaging methods in order to help make a fast initial technology selection and deployment. The review is expected to be helpful for researchers, practicing engineers, and decision makers in transportation engineering.
机译:随着对道路资产保持高标准的日益重视,对道路事故进行快速准确检查的需求变得极为重要。道路上的表面应力本质上本质上是三维(3-D)。自动化的视觉调查是最好的选择。然而,就照明等而言,成像条件是非常随机的。例如,测量坑洞体积的挑战要求以合理的空间分辨率获得大视野,而微观纹理评估则需要非常精确的成像。在这两种极端情况下,有许多情况需要3D成像。三维成像由多种技术组成,例如干涉测量和聚焦深度。其中,激光成像仪主要用于路面故障检测。在交通运输界中,许多其他技术是相对未知的,而工业产品却很少。本文的主要动力来自于采用替代技术进行运输的3D工业成像仪的稀有性。此外,由于缺乏文献来评估与路面相关的不同遇险测量情况的各种成像方法的相对优缺点,也凸显了这项工作的必要性。本概述将使人们了解可用的3D成像方法,以帮助快速进行初始技术选择和部署。预期该评论将对运输工程的研究人员,实践工程师和决策者有所帮助。

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