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Time-Quality Analysis of Spatial Data Processing for Bridge Management

机译:桥梁管理空间数据处理的时间质量分析

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Delays in delivering spatial information to support the decisions about maintenance of bridges introduce stoppages into the bridge management workflow. Previous studies show that spatial data collection and analysis are major components of these inspection programs. However, the time consuming spatial data processing cause days or weeks of delays in delivering the needed spatial information. Federal agencies, in many cases, either wait for the tedious spatial data processing, or use partial data processing results containing high uncertainties. Using the processing of 3D laser scanning point clouds as an example, this paper examines the technical feasibility and scientific challenges of quantifying the data processing time and the quality (e.g., accuracy) of derived information (e.g., minimum under-clearance of a bridge) useful for bridge management. Different decisions need different geometric attributes and relationships with various accuracy requirements. The optimal data processing strategy varies with the needed information quality and time limits. It is difficult to manually analyze the time-quality trade-offs of spatial data processing due to its ad-hoc nature and large number of possible parameter settings in data processing workflows. The authors proposed a computational framework that automatically records data processing histories of engineers along with the engineering needs. Analyzing those histories lead to insights into the trade-offs between required computational complexity/time and quality of delivered spatial information. This paper presents time-quality analysis results from two bridge inspection cases.
机译:延迟提供空间信息以支持关于维护桥梁的决策将停机介绍进入桥梁管理工作流程。以前的研究表明,空间数据收集和分析是这些检查计划的主要组成部分。然而,在提供所需的空间信息时,消耗空间数据处理的时间或几周延迟。在许多情况下,联邦机构等待繁琐的空间数据处理,或者使用含有高不确定性的部分数据处理结果。使用3D激光扫描点云的处理作为示例,本文研究了量化数据处理时间的技术可行性和科学挑战,以及派生信息的质量(例如,精度)(例如,桥的最小清除)适用于桥接管理。不同的决策需要不同的几何属性和关系,以各种精度要求。最佳数据处理策略随着所需的信息质量和时间限制而变化。由于其ad-hoc性质以及数据处理工作流程中的大量可能的参数设置,难以手动分析空间数据处理的时间质量权衡。作者提出了一种计算框架,其自动记录工程师的数据处理历史以及工程需求。分析这些历史会导致在所需的计算复杂性/时间和提供的空间信息的时间和质量之间进行探险。本文提出了两个桥梁检查案例的时间质量分析。

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