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OPTIMIZING LASER SCANNING POSITIONS IN BUILDINGS EXTERIORS: HERITAGE BUILDING APPLICATION

机译:优化建筑物外部激光扫描位置:遗产建筑应用

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Digital documentation for heritage buildings is one of the methods of preserving them as it provides a current record for the buildings. Digital records of heritage buildings can be used for future building rehabilitation, or be presented to the public to raise the awareness, increase tourism and decrease vandalism. This paper focuses on scanning object geometry factor to increase the quality of heritage's facade point cloud. It optimizes the scanner locations and the scanner field of view to increase the point cloud quality and shorten the scanning time while guaranteeing a set of quality constraints for the point cloud. The quality constraints are based on the incidence angle between the scanned surface and the laser beam, and the max spacing between points. Three different multi-objective optimization algorithms are utilized: 1) genetic algorithm, 2) Jaya algorithm, and 3) particle swarm optimization to increase the quality. Optimization performance measures are adopted to compare the outputs of the optimization algorithms. A multi-criteria decision-making technique (Weighed sum model) is used to choose the optimum solution between the Pareto frontier solutions. Optimization algorithms minimize point cloud density and scanning time while assuring a required point spacing and max incidence angle by changing distance between laser scanner and scanned Facade, horizontal and vertical scan repetitions, and scanner different resolutions. The Jaya algorithm generates the most diversifiable optimal solutions and it is the fastest of the three algorithms considered. This research focuses on vertical building facade and future research will include the all types of Heritage facade. Omar Tosson Palace in Egypt is considered as a case study to demonstrate the use of the developed methodology and to illustrate its essential features.
机译:遗产建筑的数字文档是保留它们的方法之一,因为它为建筑物提供了当前记录。遗产建筑的数字记录可用于未来的建筑康复,或者向公众提出提高意识,增加旅游和减少故意破坏。本文重点介绍扫描物体几何因素,以提高遗产立面云的质量。它优化扫描仪位置和扫描仪视野,以增加点云质量,并缩短扫描时间,同时保证点云的一组质量约束。质量约束基于扫描表面和激光束之间的入射角,以及点之间的最大间隔。使用三种不同的多目标优化算法:1)遗传算法,2)Jaya算法和3)粒子群优化增加质量。采用优化性能措施进行比较优化算法的输出。多标准决策技术(称量SUM模型)用于选择Pareto前沿解决方案之间的最佳解决方案。优化算法最小化点云密度和扫描时间,同时通过改变激光扫描仪和扫描立面之间的距离,水平和垂直扫描重复和扫描仪不同的分辨率来确保所需的点间距和最大入射角。 Jaya算法生成了最常好的最佳解决方案,它是三种算法中最快的最快。这项研究侧重于垂直建筑立面,未来的研究将包括所有类型的遗产门面。埃及的Omar Tosson Palace被认为是案例研究,以证明发达方法的使用,并说明其基本特征。

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