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3D terrain reconstruction of construction sites using a stereo camera

机译:使用立体相机对建筑工地进行3D地形重建

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This paper presents a fast and robust three-dimensional (3D) terrain reconstruction system that uses a stereo camera. Local feature-based dense 3D reconstruction consists of two major steps: matching correspondence points and dense 3D reconstruction. In the matching step, the descriptor is an important component, as its properties significantly affect the precision of the matching. Furthermore, matching is the most time-consuming step. In this paper, correspondence points are found using multi-scale descriptors (MSDs) because of their robustness and computational efficiency. A two-stage cascade matching method suitable for MSDs is also proposed. In the dense 3D reconstruction step, a probabilistic model is proposed for dense reconstruction that provides high precision through the use of robustly matched correspondence points and computational efficiency by narrowing the search range using coarsely inferred disparity values from precisely calculated triangle meshes. To collect experimental data, a prototype stereo camera system is also built that is mounted on the front of an excavator. This paper concludes by comparing the proposed dense 3D reconstruction with different types of dense 3D reconstruction methods in terms of processing time and similarity to the shape of the terrain. The results from an evaluative experiment show that MSD-based dense 3D reconstruction is suitable for various autonomous control applications in construction sites where computation time and precision are vital. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文提出了一种使用立体相机的快速而强大的三维(3D)地形重建系统。基于局部特征的密集3D重构包括两个主要步骤:匹配对应点和密集3D重构。在匹配步骤中,描述符是重要的组成部分,因为其属性会显着影响匹配的精度。此外,匹配是最耗时的步骤。在本文中,由于它们的鲁棒性和计算效率,使用多尺度描述符(MSD)可以找到对应点。还提出了一种适用于MSD的两阶段级联匹配方法。在密集的3D重建步骤中,提出了一种用于密集重建的概率模型,该模型通过使用稳健匹配的对应点和通过从精确计算的三角形网格粗略推断出的视差值来缩小搜索范围来提供较高的计算效率。为了收集实验数据,还建立了原型立体摄像机系统,该系统安装在挖掘机的正面。本文通过比较拟议的密集3D重建与不同类型的密集3D重建方法得出的结论,包括处理时间以及与地形形状的相似性。评估实验的结果表明,基于MSD的密集3D重建适用于计算时间和精度至关重要的建筑工地中的各种自主控制应用。 (C)2016 Elsevier B.V.保留所有权利。

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