The use of budget UAV systems and GIS spatial analysis in cadastral and construction surveying for building planning

IF 2.2 Q2 CONSTRUCTION & BUILDING TECHNOLOGY Frontiers in Built Environment Pub Date : 2023-08-11 DOI:10.3389/fbuil.2023.1206947
P. Sestras, S. Roșca, Ștefan Bilașco, T. Șoimoșan, S. Nedevschi
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Abstract

The uncertainty that comes with planning, constructing, and maintaining buildings is a constant issue for architects and civil engineers. As topography is the framework that unites architecture and landscape, the design and planning projects heavily rely on a range of monitoring, surveying methods and comprehensive field data. Along with the traditional topo-geodetic instrumentation used in land and construction surveying, unmanned aerial vehicles equipped with digital cameras and structure from motion software have been increasingly used recently in a variety of fields to create high-resolution digital elevation models. Despite this widespread use, in the majority of surveying projects it is considered that the topographic representations produced through this technology is inferior to that obtained with surveys conducted using conventional methods, along with other constraints imposed by legislation, environment and weather conditions. While certain limitations of unmanned aerial vehicle (UAV) systems are challenging, their advantage for gathering data from a different perspective and the generated outputs have the potential to significantly advance the construction industry. The present article provides an overview of the usefulness of budget UAV systems in developing a methodology that accompanies the conventional survey process for civil engineering applications. Thus, along with the established survey for cadastral and technical documentations necessary for the architectural process, a complementary UAV survey was developed, with subsequent spatial analysis in a geographic information system (GIS), in order to expand the array of deliverables. These include useful orthophoto map, larger-scale and denser representations of the topography, digital surface and terrain models, slope, aspect and solar radiation maps which will offer helpful information and instructions at the start of the construction planning process. The methodology contains two case studies with different degrees of terrain and vegetation challenges, and also presents an accuracy assessment and overall benefits discussion regarding the UAV implementation.
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预算无人机系统和GIS空间分析在地籍和建筑测量中的应用
对于建筑师和土木工程师来说,建筑规划、施工和维护带来的不确定性是一个持续存在的问题。由于地形是连接建筑和景观的框架,设计和规划项目在很大程度上依赖于一系列监测、测量方法和全面的实地数据。与土地和建筑测量中使用的传统地形大地测量仪器一样,配备数字相机和运动结构软件的无人机最近越来越多地用于各种领域,以创建高分辨率数字高程模型。尽管这种广泛使用,但在大多数测量项目中,人们认为通过这种技术产生的地形图不如使用传统方法进行的测量所获得的地形图,以及立法、环境和天气条件施加的其他限制。虽然无人机系统的某些局限性具有挑战性,但其从不同角度收集数据的优势和产生的产出有可能显著推动建筑业。本文概述了预算无人机系统在开发土木工程应用的常规调查过程中的有用性。因此,除了已建立的地籍调查和建筑过程所需的技术文件外,还开发了一个补充的无人机调查,随后在地理信息系统中进行空间分析,以扩大可交付成果的范围。其中包括有用的正射影像图、更大比例和更密集的地形表示、数字表面和地形模型、坡度、方位和太阳辐射图,这些地图将在施工规划过程开始时提供有用的信息和指示。该方法包含两个具有不同程度地形和植被挑战的案例研究,还提供了关于无人机实施的准确性评估和总体效益讨论。
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来源期刊
Frontiers in Built Environment
Frontiers in Built Environment Social Sciences-Urban Studies
CiteScore
4.80
自引率
6.70%
发文量
266
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