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Geodetic datum transformation to the global geocentric datum for seas and islands around Korea

机译:将大地测量基准转换为韩国周围海洋和岛屿的全球地心基准

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摘要

According to revisions of survey law taking effect on January 1, 2003, the Korean geodetic datum has been changed from a local geodetic to a world geodetic system. Since the datum change demands a geographical data transformation, the National Geographic Information Institute has established step-by-step plans for the transformation of the land data constructed through the National GIS Project, and it is in progress. For maritime data, however, no detailed transformation plan has been established yet. Therefore, it is necessary to analyze the maritime geographic data obtained through the Maritime GIS project and set up the data transformation scheme to a world geodetic system. In this study, the datum transformation parameters especially for the maritime geographical data are determined. From database constructed through MGIS, a total of 492 coordinate pairs were used in parameter determination initially. At this stage, three popular seven parameter transformation models, Bursa-Wolf, Molodensky and Veis model, and the multi regression equation are applied, and the transformation parameters from the Molodensky model are selected for its accuracy and consistency with the land data transformation method. To eliminate the local bias caused by the nonequally distributed stations, a network optimization is applied and 42 stations are selected to determine the final transformation parameters. The distortion after applying the similarity transformation is modeled through a least squares collocation with Gaussian model, and high accuracy better than 15 cm in coordinate transformation is obtained.
机译:根据2003年1月1日生效的勘测法的修订,韩国的大地测量基准已从本地大地测量改为世界大地测量。由于基准面的变化需要进行地理数据转换,因此国家地理信息研究所已经制定了逐步计划,以对通过国家GIS项目构建的土地数据进行转换,该计划正在进行中。但是,对于海事数据,尚未建立详细的转换计划。因此,有必要分析通过海上GIS项目获得的海上地理数据,并建立到世界大地测量系统的数据转换方案。在这项研究中,确定了基准转换参数,特别是对于海洋地理数据。从通过MGIS构建的数据库中,最初总共使用492个坐标对进行参数确定。在这一阶段,应用了三个流行的七个参数转换模型,即Bursa-Wolf,Molodensky和Veis模型以及多元回归方程,并从Molodensky模型中选择了转换参数,以确保其准确性和与土地数据转换方法的一致性。为了消除由不均匀分布的站点引起的局部偏差,应用了网络优化,并选择了42个站点来确定最终的转换参数。应用最小二乘搭配和高斯模型对应用相似变换后的失真进行建模,获得坐标变换中优于15 cm的高精度。

著录项

  • 来源
    《Geosciences Journal》 |2005年第4期|353-361|共9页
  • 作者单位

    Department of Geoinformatics The University of Seoul 130-743 Seoul Korea;

    Department of Civil and Environmental Engineering and Geodetic Science The Ohio State University 43210 Columnus OH USA;

    Department of Geoinformatics The University of Seoul 130-743 Seoul Korea;

    Department of Geoinformation Engineering Sejong University 143-747 Seoul Korea;

    Institute for Geomatics Korean Association of Surveying ampamp Mapping 150-722 Seoul Korea;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Datum Transformation; network optimization; least square collocation;

    机译:基准转换;网络优化;最小二乘配置;

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