Determination of Construction Site Elevations Using Drone Technology

Yuhan Jiang, Yong Bai
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引用次数: 10

Abstract

Image-based 3D-reconstruction techniques, such as drone photogrammetry, have been adopted to various construction operations. The challenge is determining the construction site elevation, which is the vertical distance from the ground to the camera, in real-time. This paper presents the research results of using two frame drone-based ortho-images to estimate the elevation of a construction site. This idea is derived from the stereo vision model for measuring distance of indoor scenes. The spatial resolution of the stereo vision is a positive correlation with its baseline, the distance between two cameras. However, a large baseline stereo cameras system is impossible for a drone to carry. Therefore, a modified stereo vision method is proposed to use a drone’s camera to capture low and high ortho-image pairs, which enlarges the baseline, and makes the spatial resolution adjustable for every single construction site. For determining the elevation of each pixel in the image pair, the researchers conducted drone flight planning, image pairs capturing, image transforming, image pixel matching, elevation recovering and modeling. A field experiment was performed for evaluating the accuracy of the proposed method. The success of this research will advance the efficiency of construction operations that heavily depend on elevation information such as the excavation operations and facility layout.
利用无人机技术确定建筑工地标高
基于图像的3d重建技术,如无人机摄影测量,已被用于各种建筑作业。挑战在于实时确定建筑工地的高程,即从地面到摄像机的垂直距离。本文介绍了利用两帧无人机正射影估计建筑工地高程的研究结果。该思想来源于室内场景距离测量的立体视觉模型。立体视觉的空间分辨率与其基线(两个摄像头之间的距离)呈正相关。然而,大型基线立体摄像机系统不可能由无人机携带。为此,提出了一种改进的立体视觉方法,利用无人机的摄像头捕获低、高正射影对,扩大了基线,使每个建筑工地的空间分辨率可调。为了确定图像对中每个像素的高程,研究人员进行了无人机飞行规划、图像对捕获、图像变换、图像像素匹配、高程恢复和建模。通过现场试验对该方法的精度进行了评价。本研究的成功将提高开挖作业和设施布置等高度依赖高程信息的施工作业的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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