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Optimal Space Interpolation Method for Continuous Marine Vertical Datum Based on WGS-84 Ellipsoid

机译:基于WGS-84椭球的连续海洋垂直基准面最优空间插值方法

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摘要

Global Navigation Satellite System (GNSS)-based survey technology improves the accuracy and usability of location information by enabling the rapid updating of different information and the efficient use of integration through an ellipsoid. The global marine sector also uses the GNSS to produce rapid and accurate hydrographic surveys and to expand investment and introduce integrated use, such as the S-10X electronic chart. In this study, the conversion of a vertical-based information provision system through a tidal benchmark that is currently implemented to an area-based information provision system was examined. We analyzed a range that allows area modeling using a tidal benchmark by calculating the height from an ellipsoid to the mean sea level (MSL) using the tidal benchmark. An experiment to determine the optimal spatial interpolation was conducted by comparing and analyzing the external verification and performance results. The results of this study are expected to be actively utilized in the manufacture of a continuous marine vertical datum system based on WGS-84.
机译:基于全球导航卫星系统(GNSS)的测量技术可通过快速更新不同信息并通过椭球有效利用积分来提高位置信息的准确性和可用性。全球海洋部门还使用GNSS进行快速准确的水文测量,并扩大投资并引入综合用途,例如S-10X电子海图。在这项研究中,研究了将基于垂直基准的信息提供系统通过当前已实施的潮汐基准转换为基于区域的信息提供系统。我们分析了一个范围,该范围允许使用潮汐基准进行面积建模,方法是使用潮汐基准计算从椭球体到平均海平面(MSL)的高度。通过比较和分析外部验证和性能结果,进行了确定最佳空间插值的实验。这项研究的结果有望在基于WGS-84的连续海洋垂直基准系统的制造中得到积极利用。

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