捷克国家长距离测量标准多年测量结果Koštice

N. Kosarev, J. Lechner, V. Padve, I. A. Umnov
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引用次数: 0

摘要

目前,基于激光远程测量原理的电子全站仪用于地理空间信息的采集。电子全站仪在使用过程中,随着时间的推移,其技术参数会发生变化,需要对仪器进行定期校准。电子全站仪远程测距激光组件的校准是在专门的基线上进行的,主要包括测试电子全站仪的常数分量,确定比例尺误差和确定循环误差。在捷克共和国境内,有两条大地测量基线,即国家校准基线hvzda和Koštice。Koštice是捷克国家长距离测量标准,对电子全站仪进行校准。从2017年到2020年,校准了来自Leica Geosystems、Trimble、Topcon、Sokkia、Nikon、Pentax、South和Geomax等不同制造商的约600台电子全站仪。在所有组合中,在该程序下执行的测量总数约为40000次。本文介绍了莱卡Geosystems公司生产的电子全站仪在2017 - 2020年大地测量基线Koštice上进行的多年测量分析结果。总共分析了基线剖面1-2、1-3、1-4、1-5、1-6、1-7和1-8之间的9186个测量值。对于每个部分,测量已被检测到没有通过格拉布测试标准(斯米尔诺夫-格拉布测试)。总共检测到261个异常值,占测量总数的3%。利用参数化版最小二乘优化算法剔除检测到的离群点后,求出每段基线的长度,并对所得结果的准确性进行评价。基线剖面长度的计算值与慕尼黑(德国)联邦国防军大学实验室的专家在大地基线Koštice上进行的测量结果以及捷克共和国大地测量、地形和制图研究所的专家在同一基线上进行的类似测量结果大体一致。对于第1-5部分,基于两种验证的结果,已经获得的差异超过了确定基线特征的准确度的允许值。这可能与某些柱子的位移有关,这些柱子主要具有周期性,并取决于季节。为了对某些支柱的不稳定性进行更具体的假设,建议每三个月对基线截面的长度进行一次验证,根据所有组合的程序,这将允许比较基线截面长度的置信限值,并提出关于单个中心位置变化的假设。因此,所显示的偏差应纳入长度测量的剩余不确定度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Results of Many Years’ Measurements Conducted at the Czech State Long Distances Measuring Standard Koštice
Currently, electronic total stations based on the principles of laser long-range distance measurement are used for collecting geospatial information. As time goes, in the process of using the electronic total stations, their technical parameters vary, necessitating periodic calibration of the instruments. Calibration of the long-range distance measurement laser component of the electronic total stations is carried out at specialized baselines and consists in testing the constant component of an electronic total station, determining the scale error and determining the cyclic error. In the territory of the Czech Republic, two geodetic baselines are operated, the National Calibration Baseline Hvězda and Koštice. Koštice is the Czech State Long Distances Measuring Standard, where electronic total stations are calibrated. From 2017 to 2020, about 600 electronic total stations by different manufacturers Leica Geosystems, Trimble, Topcon, Sokkia, Nikon, Pentax, South and Geomax were calibrated. The total number of measurements performed under the program in all combinations has equaled about 40000. In this paper, results of analysis many years’ measurements performed at the geodetic baseline Koštice from 2017 to 2020 with electronic total stations manufactured by Leica Geosystems are presented. In total, 9186 measurements between the baseline sections 1–2, 1–3, 1–4, 1–5, 1–6, 1–7 and 1–8 have been analyzed. For each section, measurements have been detected which did not pass the Grubbs test criterion (the Smirnov – Grubbs test). Altogether, 261 outliers have been detected, totaling 3 % of the total number of measurements. After excluding the detected outliers with the algorithm of the parametric version of least squares optimization, the length of each section of the baseline was found, and the accuracy of the results obtained was evaluated. The calculated values of the length of the baseline sections are in generally good agreement with the results of the measurements performed at the geodetic baseline Koštice by the specialists from the laboratory of the Bundeswehr University in Munich (Germany) and the results of similar measurements conducted at the same baseline by the specialists from the Research Institute of Geodesy, Topography and Cartography (Czech Republic). For section 1–5, based on the results of both verifications, differences have been obtained exceeding the permissible values of the accuracy of determining baseline characteristics. This may be related to the fact that there are displacements of certain pillars, which mainly have a periodic character and depend on the season. To allow more specific assumptions regarding instability of certain pillars, it is recommended to verify the lengths of the baseline sections once in three months, according to the program in all combinations, which will allow comparison of the values of the confidence limits of the baseline section lengths and putting forward hypotheses regarding variations in the position of individual centers, so that the deviations revealed should be included into the residual uncertainty of length measurement.
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