Three-Dimensional Modelling of A Bridge by Integrating Terrestrial and Aerial Photogrammetry Applying an Adapted Capture Method

IF 0.6 Q4 ENGINEERING, AEROSPACE
Veselina Gospodinova, Todor Todorov
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引用次数: 0

Abstract

Three-dimensional (3D) photogrammetric modelling is a contemporary remote sensing method for generating digital models with their specific appearance and texture, which are used in various areas of life. The modelling of complex geometry objects, such as masonry bridges, is not an easy task, because of their specific features (the presence of arches and various niches). This determines the choice of an adapted capture method according to the individual characteristics of the object. The paper presents research aimed at generating a highly accurate three-dimensional model of a bridge, by combining terrestrial and aerial photogrammetry. A low-cost unmanned aerial system (UAS) was used for capturing the upper side of the bridge. This significantly optimised capture time. But its capabilities do not allow to capture the bridge arches from the bottom upwards, nor to obtain an accurate model of the bridge railing. Because of this, a terrestrial survey was made with a digital camera, thus complementing the information required to generate a comprehensive model of the bridge. The integration of aerial and terrestrial capturing using low-cost cameras and systems, along with the application of modern algorithms for processing, allow to create precise, accurate, and detailed digital models. It is all very important for future conservation, restoration, adaptation, and socialisation of such type of objects which are monuments of culture.
应用自适应捕获法整合陆航摄影测量的桥梁三维建模
三维(3D)摄影测量建模是一种当代遥感方法,用于生成具有特定外观和纹理的数字模型,用于生活的各个领域。复杂几何物体的建模,如砖石桥,并不是一件容易的事情,因为它们具有特定的特征(拱门和各种壁龛的存在)。这决定了根据目标的个体特征选择适合的捕获方法。本文介绍了一项研究,旨在通过结合地面和航空摄影测量来生成高精度的桥梁三维模型。一种低成本的无人机系统(UAS)被用于捕获桥的上部。这大大优化了捕获时间。但它的功能不允许从底部向上捕捉桥拱,也无法获得桥栏杆的精确模型。因此,使用数码相机进行了地面调查,从而补充了生成桥梁综合模型所需的信息。使用低成本相机和系统的空中和地面捕获的集成,以及现代处理算法的应用,允许创建精确,准确和详细的数字模型。这对未来保护、修复、适应和社会化这类文化古迹都非常重要。
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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来源期刊
Aerospace Research in Bulgaria
Aerospace Research in Bulgaria ENGINEERING, AEROSPACE-
自引率
33.30%
发文量
17
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