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Uncertainty-aware geospatial system for mapping and visualizing underground utilities

机译:具有不确定性的地理空间系统,用于对地下公用设施进行地图绘制和可视化

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Underground utility lines being struck is a long-standing problem worldwide, causing public service disruptions, project delays, cost overruns, property damage, injuries, and fatalities that cost billions of dollars each year. Utility strikes are attributed to two main causes: the lack of reliable data regarding the true locations of underground utilities and the lack of an effective means to communicate the inherent uncertainties associated with utility location data to end-users (e.g., excavator operators). Inaccurate utility location information leads to falsely instilled confidence and potentially misleads equipment operators into unintentional utility strikes. There is a great need to map underground utilities and to model and communicate uncertainties to end-users for safe excavations. This paper presents a geospatial system for mapping and uncertainty-aware visualization of underground utilities. Ground penetrating radar (GPR), global positioning system (GPS), and geographical information system (GIS) are integrated into a total 3G system for geospatial utility data collection. Field experiments are conducted to assess the locating accuracy of the system and reveal the patterns of positional errors. Three-dimensional (3D) probabilistic uncertainty bands that enclose the true utility line with specific probabilities are developed to handle the positional uncertainties of underground utilities. Multipatch surface models are adopted to visualize the 3D uncertainty bands in GIS to communicate both the locations of utilities and the associated uncertainties to end-users. The geospatial 3G system, together with the proposed 3D probabilistic uncertainty bands, enables the mapping and visualization of some underground utilities in a non-destructive and uncertainty-aware manner to avoid disastrous utility strikes and promote safe excavations. (C) 2015 Elsevier B.V. All rights reserved.
机译:在世界范围内,地下公用事业管线遭到破坏是一个长期存在的问题,导致公共服务中断,项目延误,成本超支,财产损失,伤害和死亡,每年造成数十亿美元的损失。公用事业罢工的主要原因有两个:缺乏有关地下公用事业真实位置的可靠数据,以及缺乏将与公用事业位置数据相关的内在不确定性传达给最终用户(例如,挖掘机操作员)的有效手段。不正确的公用事业位置信息会导致错误地灌输信心,并可能使设备操作员误入非故意的公用事业罢工。迫切需要绘制地下公用设施的图,并对不确定性进行建模并与之沟通,以进行安全的挖掘。本文提出了一种地理空间系统,用于地下设施的制图和可感知不确定性的可视化。探地雷达(GPR),全球定位系统(GPS)和地理信息系统(GIS)已集成到整个3G系统中,用于地理空间效用数据收集。进行现场实验以评估系统的定位精度并揭示位置误差的模式。开发了以特定概率包围真实效用线的三维(3D)概率不确定性带,以处理地下公用设施的位置不确定性。采用多面体曲面模型来可视化GIS中的3D不确定性带,以将公用事业的位置和相关的不确定性传达给最终用户。地理空间3G系统与拟议的3D概率不确定性带一起,能够以非破坏性和不确定性感知的方式绘制和可视化一些地下公用事业,以避免灾难性的公用事业罢工并促进安全的挖掘。 (C)2015 Elsevier B.V.保留所有权利。

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