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Computing the Deflection of the Vertical for Improving Aerial Surveys: A Comparison between EGM2008 and ITALGEO05 Estimates

机译:计算垂直线的偏斜度以改善航空测量:EGM2008和ITALGEO05估算值的比较

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Recent studies on the influence of the anomalous gravity field in GNSS/INS applications have shown that neglecting the impact of the deflection of vertical in aerial surveys induces horizontal and vertical errors in the measurement of an object that is part of the observed scene; these errors can vary from a few tens of centimetres to over one meter. The works reported in the literature refer to vertical deflection values based on global geopotential model estimates. In this paper we compared this approach with the one based on local gravity data and collocation methods. In particular, denoted by ξ and η , the two mutually-perpendicular components of the deflection of the vertical vector (in the north and east directions, respectively), their values were computed by collocation in the framework of the Remove-Compute-Restore technique, applied to the gravity database used for estimating the ITALGEO05 geoid. Following this approach, these values have been computed at different altitudes that are relevant in aerial surveys. The ( ξ , η ) values were then also estimated using the high degree EGM2008 global geopotential model and compared with those obtained in the previous computation. The analysis of the differences between the two estimates has shown that the ( ξ , η ) global geopotential model estimate can be reliably used in aerial navigation applications that require the use of sensors connected to a GNSS/INS system only above a given height (e.g., 3000 m in this paper) that must be defined by simulations.
机译:对GNSS / INS应用中异常重力场的影响的最新研究表明,在航空勘测中忽略垂直偏转的影响会在测量作为观察场景一部分的物体时引起水平和垂直误差;这些误差的范围从几十厘米到一米多不等。文献中报道的工作是基于全球地势模型估计值的垂直挠度值。在本文中,我们将这种方法与基于局部重力数据和搭配方法的方法进行了比较。特别是,用垂直矢量的偏转的两个相互垂直的分量ξ和η表示(分别在北和东方向),它们的值是通过在Remove-Compute-Restore技术的框架中并置来计算的,应用于用于估计ITALGEO05大地水准面的重力数据库。按照这种方法,已经在与航空勘测相关的不同海拔高度计算了这些值。然后,还使用高度EGM2008全球地球电势模型估算(ξ,η)值,并将其与先前计算中获得的值进行比较。对这两个估计值之间差异的分析表明,(ξ,η)全球地理势模型估计值可以可靠地用于需要使用仅在给定高度以上连接到GNSS / INS系统的传感器的空中导航应用中(例如(本文中为3000 m),必须通过模拟进行定义。

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