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首页> 外文期刊>Journal of Transportation Engineering >Modeling of Crack Depths in Digital Images of Concrete Pavements Using Optical Reflection Properties
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Modeling of Crack Depths in Digital Images of Concrete Pavements Using Optical Reflection Properties

机译:利用光反射特性对混凝土路面数字图像中的裂缝深度进行建模

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Digital image-based automated pavement crack detection and classification technology has seen vast improvements in the recent years. Although crack lengths and widths can be evaluated using state-of-the-art software with a reasonable accuracy, no reported evidence is found in extending this technology to evaluate crack depths. As a supplement to the existing technology, additional information relevant to pavement crack severity could be revealed by the optical modeling of the image formation process and the subsequent analysis of the variation in pixel intensity profiles within images. A preliminary study was carried out to model the digital image formation of cracked concrete pavements based on the bidirectional reflection distribution function. This study was specifically focused on the optical modeling of shallow longitudinal and transverse cracks as well as joints of concrete pavements using the variation of reflection properties at surface discontinuities. Surface discontinuities were considered to be of regular geometrical shapes for simplification. The new image formation model revealed a definitive relationship among the crack widths and depths and the maximum pixel intensity contrasts seen in the images of the cracks. The model calibration involved the selection of reflection properties to match the pixel intensity contrasts across model generated images of cracks and joints against those of identical cracks formed in concrete pavements. The model predictions of crack depths were also verified using actual crack data not used in the calibration. Finally the usefulness of the calibrated model in evaluating the depths of shallow cracks and differentiating cracks from joints and other surface irregularities in concrete pavements is illustrated.
机译:近年来,基于数字图像的自动路面裂缝检测和分类技术已取得了巨大进步。尽管可以使用最先进的软件以合理的精度评估裂缝的长度和宽度,但在扩展该技术以评估裂缝深度方面没有发现报道的证据。作为对现有技术的补充,可以通过图像形成过程的光学建模以及图像中像素强度轮廓变化的后续分析来揭示与路面裂缝严重性有关的其他信息。进行了初步研究,以基于双向反射分布函数模拟开裂混凝土路面的数字图像形成。这项研究的重点是利用表面不连续处反射特性的变化,对浅层纵向和横向裂缝以及混凝土路面的接缝进行光学建模。为了简化,表面不连续性被认为是规则的几何形状。新的图像形成模型揭示了裂纹宽度和深度与在裂纹图像中看到的最大像素强度对比度之间的确定关系。模型校准涉及选择反射特性,以使裂缝和接缝的模型生成图像上的像素强度对比度与混凝土路面中形成的相同裂缝的图像强度匹配。还使用未在校准中使用的实际裂纹数据验证了裂纹深度的模型预测。最后,说明了校准模型在评估浅裂缝深度和区分裂缝与混凝土路面中的接缝和其他表面不平整度方面的有用性。

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