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OPUS-RS Pair Points: Case Study

机译:OPUS-RS对点:案例研究

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摘要

Referencing small engineering surveys to the national spatial reference system (NSRS) presents advantages in terms of spatially coordinating infrastructure and facilitates the inclusion of the infrastructure in a geographic information system. In cases where the total station is the appropriate tool to conduct the survey, online positioning user service rapid static (OPUS-RS) can be employed to economically establish azimuth pair points to orient the survey to the NSRS. Using OPUS-RS coordinates as observations along with global positioning system (GPS) vectors and total station observations in a least-squares adjustment to establish the azimuth pair points adds robustness to the least-squares adjustment to isolate systematic errors. All the observations contribute to the least-squares adjustment but some observations contribute more than others do. Redundancy numbers can be used to identify those observations that contribute little to the adjustment results. By analyzing the results of three least-squares adjustments, it will be shown that under normal conditions total station observations contribute little to the overall adjustment. Under obstructed conditions total station observations contribute to the vertical precision of the azimuth pair points. OPUS-RS appears to be less susceptible to vertical biases than GPS vectors at obstructed sites.
机译:将小型工程测量结果引用到国家空间参考系统(NSRS),可以在空间协调基础结构方面带来优势,并有助于将基础结构包含在地理信息系统中。在全站仪是进行测量的合适工具的情况下,可以使用在线定位用户服务快速静态(OPUS-RS)来经济地建立方位对点,以将测量结果定向到NSRS。使用OPUS-RS坐标作为观测值以及全球定位系统(GPS)矢量和最小二乘平差中的全站仪观测值以建立方位角对点,为最小二乘平差增加了鲁棒性以隔离系统误差。所有观察值都对最小二乘平差做出了贡献,但是某些观察值的贡献要大于其他观察值。冗余数字可用于识别对调整结果影响不大的那些观测值。通过分析三个最小二乘平差的结果,可以看出,在正常情况下,全站仪观测对整体平差的贡献很小。在障碍情况下,全站仪观测有助于方位对点的垂直精度。与受阻塞地点的GPS向量相比,OPUS-RS似乎不易受到垂直偏差的影响。

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