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Crack identification method for concrete structures considering angle of view using RGB-D camera-based sensor fusion

机译:基于RGB-D相机的传感器融合,考虑视角角度的混凝土结构裂缝识别方法

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摘要

Cracks on concrete structures are an important indicator for assessing concrete durability and structural safety. Although such cracks are typically monitored by manual visual inspection, this method has drawbacks in terms of inspection time, safety, cost-effectiveness, and measurement accuracy. An innovative alternative is digital image processing, which can be used to obtain crack information from images captured using a digital camera. However, in image-based crack detection, the crack width may vary depending on the angle of the camera with respect to the concrete surface. A skewed angle of view is often encountered, particularly when capturing images from unmanned aerial vehicles or from higher locations. This study proposes a crack identification strategy using a combination of RGB-D and high-resolution digital cameras to accurately measure cracks regardless of the angle of view. The camera system is equipped with a tailored sensor fusion algorithm for crack identification, enabling a high measurement resolution and a robust depth estimation considering the skewed angle problem. An approximate plane corresponding to the concrete surface is introduced to effectively handle the high noise in the depth measurement data of the RGB-D camera. Subsequently, the crack image captured using the high-resolution digital camera is mapped onto the obtained plane model, allowing the crack width to be determined using the three-dimensional coordinates of each crack pixel. The measurement accuracy of the proposed approach is experimentally validated on an actual concrete structure.
机译:混凝土结构上的裂缝是评估混凝土耐用性和结构安全性的重要指标。尽管通常通过手动目视检查监测这种裂缝,但该方法在检查时间,安全性,成本效益和测量精度方面具有缺点。一种创新的替代方案是数字图像处理,可用于从使用数码相机捕获的图像中获得裂缝信息。然而,在基于图像的裂缝检测中,裂缝宽度可以根据照相机相对于混凝土表面的角度而变化。通常遇到偏斜视角,特别是当捕获来自无人驾驶飞行器或从更高位置的图像时。本研究提出了使用RGB-D和高分辨率数码相机的组合来准确测量裂缝的裂缝识别策略,无论观察角度如何。相机系统配备了定制的传感器融合算法,用于裂缝识别,实现了考虑偏斜角问题的高测量分辨率和强大的深度估计。引入对应于混凝土表面的近似平面,以有效地处理RGB-D相机的深度测量数据中的高噪声。随后,使用高分辨率数码相机捕获的裂缝图像映射到所获得的平面模型上,允许使用每个裂纹像素的三维坐标来确定裂缝宽度。所提出的方法的测量精度在实验上验证了实际的混凝土结构。

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