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Automatic execution of workflows on laser-scanned data for extracting bridge surveying goals

机译:在激光扫描数据上自动执行工作流程以提取桥梁测量目标

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With the capability of capturing detailed geometry of bridges in minutes, laser scanning technology has attracted the interests of bridge inspectors and researchers in the domain of bridge management. A challenge of effectively utilizing laser scanned point clouds for bridge inspection is that inspectors need to manually extract and measure large numbers of geometric features (e.g., points) for deriving geometric information items (e.g., the minimum underclearance) of bridges, named as bridge surveying goals in this research. Tedious manual data processing impedes inspectors from quantitatively understanding how various data processing options (e.g., algorithms, parameter values) influence the data processing time and the reliabilities of the surveying goal results. This paper shows the needs of automatic workflow executions for extracting surveying goals from laser scanned point clouds, and presents a computational framework for addressing these needs. This computational framework is composed of formal representations of workflows and mechanisms for constructing and executing workflows. Using a prototype system implemented based on this framework, we constructed and quantitatively characterized three workflows for extracting three representative bridge surveying goals, using three metrics of workflow performance defined in this research: exhaustiveness of measurement sampling, reliability of surveying goal results, and time efficiency.
机译:由于能够在数分钟内捕获桥梁的详细几何图形,激光扫描技术已引起桥梁检查人员和研究人员在桥梁管理领域的兴趣。有效地利用激光扫描的点云进行桥梁检查的挑战是检查员需要手动提取和测量大量几何特征(例如点)以得出桥梁的几何信息(例如最小净空度),称为桥梁测量研究的目标。繁琐的手动数据处理使检查人员无法定量地了解各种数据处理选项(例如算法,参数值)如何影响数据处理时间和测量目标结果的可靠性。本文显示了从激光扫描的点云中提取测量目标的自动工作流程执行需求,并提出了解决这些需求的计算框架。此计算框架由工作流的形式表示形式以及用于构造和执行工作流的机制组成。使用基于此框架实施的原型系统,我们使用本研究中定义的三个工作流程性能指标,构建并定量表征了三个工作流程以提取三个代表性桥梁测量目标:测量采样的详尽度,测量目标结果的可靠性和时间效率。

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