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3D Digitisation of Large-Scale Unstructured Great Wall Heritage Sites by a Small Unmanned Helicopter

机译:小型无人直升机对大型非结构化长城遗址的3D数字化

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The ancient Great Wall of China has long suffered from damage due to natural factors and human activities. A small low-cost unmanned helicopter system with a laser scanner and a digital camera is developed to efficiently visualize the status of the huge Great Wall area. The goal of the system is to achieve 3D digitisation of the large-scale Great Wall using a combination of fly-hover-scan and flying-scan modes. However, pose uncertainties of the unmanned helicopter could cause mismatching among point clouds acquired by each hovering-scan. This problem would become more severe as the target area becomes larger and more unstructured. Therefore, a hierarchical optimization framework is proposed in this paper to achieve 3D digitisation of the large-scale unstructured Great Wall with unpredictable pose uncertainties of the unmanned helicopter. In this framework, different optimization methodologies are proposed for the fly-hover-scan and flying-scan modes, respectively, because different scan modes would result in different features of point clouds. Moreover, a user-friendly interface based on WebGL has been developed for 3D model visualization and comparison. Experimental results demonstrate the feasibility of the proposed framework for 3D digitisation of the Great Wall segments.
机译:长期以来,中国古代长城由于自然因素和人类活动而遭受破坏。开发了一种带有激光扫描仪和数码相机的小型低成本无人直升机系统,以有效地可视化巨大的长城地区的状况。该系统的目标是通过结合使用悬停扫描和飞行扫描模式来实现大型长城的3D数字化。但是,无人直升机的姿态不确定性可能会导致每次悬停扫描获取的点云之间不匹配。随着目标区域变大和结构化,这个问题将变得更加严重。因此,本文提出了一种层次优化框架,以实现大型无结构长城的3D数字化,并具有无人驾驶直升机的姿态不确定性。在此框架中,分别针对飞行悬停扫描和飞行扫描模式提出了不同的优化方法,因为不同的扫描模式会导致点云的特征不同。此外,已经开发了基于WebGL的用户友好界面,用于3D模型的可视化和比较。实验结果证明了所提出的长城路段3D数字化框架的可行性。

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