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Software development and its description for Geoid determination based on Spherical-Cap-Harmonics Modelling using digital-zenith camera and gravimetric measurements hybrid data

机译:基于球帽谐波建模的软件开发及其描述使用数字 - Zenith相机和重量测量混合数据

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Over several years the Institute of Geodesy and Geoinformatics (GGI) was engaged in the design and development of a digital zenith camera. At the moment the camera developments are finished and tests by field measurements are done. In order to check these data and to use them for geoid model determination DFHRS (Digital Finite element Height reference surface (HRS)) v4.3. software is used. It is based on parametric modelling of the HRS as a continous polynomial surface. The HRS, providing the local Geoid height N, is a necessary geodetic infrastructure for a GNSS-based determination of physcial heights H from ellipsoidal GNSS heights h, by H=h-N. The research and this publication is dealing with the inclusion of the data of observed vertical deflections from digital zenith camera into the mathematical model of the DFHRS approach and software v4.3. A first target was to test out and validate the mathematical model and software, using additionally real data of the above mentioned zenith camera observations of deflections of the vertical. A second concern of the research was to analyze the results and the improvement of the Latvian quasi-geoid computation compared to the previous version HRS computed without zenith camera based deflections of the vertical. The further development of the mathematical model and software concerns the use of spherical-cap-harmonics as the designed carrier function for the DFHRS v.5. It enables - in the sense of the strict integrated geodesy approach, holding also for geodetic network adjustment - both a full gravity field and a geoid and quasi-geoid determination. In addition, it allows the inclusion of gravimetric measurements, together with deflections of the vertical from digital-zenith cameras, and all other types of observations. The theoretical description of the updated version of DFHRS software and methods are discussed in this publication.
机译:多年来,大地测量研究所和地理信息学(GGI)从事数字天顶相机的设计和开发。目前正在完成相机的开发和通过现场测量测试。为了检查这些数据并将它们用于大型木制模型确定DFHRS(数字有限元高度参考表面(HRS))V4.3。使用软件。它基于作为连续多项式表面的HRS的参数建模。在HRS中,提供本地大地水准面高度N,是用于从椭圆GNSS高度h基于GNSS的判定肌肉发展高度H的必要大地测量基础设施,由H = H-N。该研究和本出版物正在处理从数字天顶相机的观察到的垂直偏转数据数据进入DFHRS方法的数学模型和软件V4.3。第一个目标是测试并验证数学模型和软件,使用上述Zenith相机的另外实际数据进行垂直的偏转的观察。研究的第二个问题是与在没有基于垂直的垂直的偏转的偏转的情况下,分析结果和改进拉脱维亚准大地理位柜计算的结果和改进。数学模型和软件的进一步发展涉及使用球帽谐波作为DFHRS V.5的设计载体功能。它能够 - 在严格的集成大地测量方法的意义上,也适用于大地测量网络调整 - 既有完全的重力场和大地大麻和准大地区测定。此外,它允许将重量测量与数字 - 天顶相机的垂直偏转以及所有其他类型的观察结果一起包含。本出版物讨论了DFHRS软件和方法的更新版本的理论描述。

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