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首页> 外文期刊>Journal of surveying engineering >OPUS for Horizontal Subcentimeter-Accuracy Landslide Monitoring: Case Study in the Puerto Rico and Virgin Islands Region
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OPUS for Horizontal Subcentimeter-Accuracy Landslide Monitoring: Case Study in the Puerto Rico and Virgin Islands Region

机译:用于水平亚厘米级精度滑坡监测的OPUS:在波多黎各和维尔京群岛地区的案例研究

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This study demonstrates the usefulness of an approach based on the Online Positioning User Service (OPUS) provided by the National Geodetic Survey (NGS) of the National Oceanic and Atmospheric Administration (NOAA) to process Global Positioning System (GPS) data and conduct long-term landslide monitoring in the Puerto Rico and Virgin Islands region. Continuous GPS data collected at a creeping landslide site during 2 years were used to evaluate different scenarios for landslide surveying: continuous or campaign, long duration or short duration, morning or afternoon (during different weather conditions). OPUS uses the Continuously Operating Reference Station (CORS) network managed by the NGS as control points and user-collected data to solve for the position of the occupied station (rover). In July 2011, there were 19 NGS CORS sites in the Puerto Rico and Virgin Islands region. This dense GPS network provided a precise and reliable reference frame for subcentimeter-accuracy landslide monitoring in this region. OPUS static solutions (OPUS-S) for sessions as short as 4 h, and OPUS rapid static solutions (OPUS-RS) for sessions as short as 15 min, can achieve subcentimeter horizontal accuracy if the collection of data during extreme weather conditions is avoided. The uncertainty (peak-to-peak error) reported by a single OPUS-S solution differs from the "true" accuracy by a factor of 1.7 for the horizontal components and 1.3 for the vertical component. The uncertainty reported by a single OPUS-RS solution differs from the accuracy by a factor of 1.4 for horizontal components, while the uncertainty of vertical component statistically agrees with the vertical accuracy. This study also indicates that rainfall events can seriously degrade the performance of high-accuracy GPS. Field GPS landslide surveying should avoid rainfall episodes when accompanied by thunderstorms and the passage of detrimental weather fronts. Once appropriate precautions are taken, the results of this investigation show that OPUS-S and OPUS-RS are ideal alternative tools for subcentimeter-accuracy landslide monitoring.
机译:这项研究证明了由美国国家海洋与大气管理局(NOAA)的国家大地测量局(NGS)提供的基于在线定位用户服务(OPUS)的方法的有效性,该方法可处理全球定位系统(GPS)数据并进行长期波多黎各和维尔京群岛地区的定期滑坡监测。连续两年在滑坡滑坡现场收集的GPS数据用于评估滑坡测量的不同情况:连续或运动,长时间或短时间,早晨或下午(在不同天气条件下)。 OPUS使用由NGS管理的连续运行参考站(CORS)网络作为控制点和用户收集的数据来解决占用站(流动站)的位置。 2011年7月,在波多黎各和维尔京群岛地区共有19个NGS CORS站点。这个密集的GPS网络为该地区的亚厘米级精度滑坡监测提供了精确而可靠的参考系。如果避免在极端天气情况下收集数据,那么用于会话的短时间为4小时的OPUS静态解决方案(OPUS-S)和用于会话的短时间为15分钟的OPUS快速静态解决方案(OPUS-RS)可以达到亚厘米水平的精度。 。单个OPUS-S解决方案报告的不确定性(峰到峰误差)与“真实”精度的差异为水平分量为1.7,垂直分量为1.3。单个OPUS-RS解决方案报告的不确定度与水平分量的精度相差1.4倍,而垂直分量的不确定度在统计上与垂直精度一致。这项研究还表明,降雨事件会严重降低高精度GPS的性能。 GPS滑坡现场勘测应避免雷暴和有害天气前沿的通过时降雨的发生。一旦采取了适当的预防措施,这项调查的结果表明,OPUS-S和OPUS-RS是用于亚厘米级精度滑坡监测的理想替代工具。

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