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Development of a Coordinate Transformation method for direct georeferencing in map projection frames

机译:开发用于地图投影框架中直接地理配准的坐标变换方法

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摘要

This paper develops a novel Coordinate Transformation method (CT-method), with which the orientation angles (roll, pitch, heading) of the local tangent frame of the GPS/INS system are transformed into those (omega, phi, kappa) of the map projection frame for direct georeferencing (DG). Especially, the orientation angles in the map projection frame were derived from a sequence of coordinate transformations. The effectiveness of orientation angles transformation was verified through comparing with DG results obtained from conventional methods (Legat method1 and POSPac method2) using empirical data. Moreover, the CT-method was also validated with simulated data. One advantage of the proposed method is that the orientation angles can be acquired simultaneously while calculating position elements of exterior orientation (EO) parameters and auxiliary points coordinates by coordinate transformation. These three methods were demonstrated and compared using empirical data. Empirical results show that the CT-method is both as sound and effective as Legat method. Compared with POSPac method, the CT-method is more suitable for calculating EO parameters for DG in map projection frames. DG accuracy of the CT-method and Legat method are at the same level. DG results of all these three methods have systematic errors in height due to inconsistent length projection distortion in the vertical and horizontal components, and these errors can be significantly reduced using the EO height correction technique in Legat's approach. Similar to the results obtained with empirical data, the effectiveness of the CT-method was also proved with simulated data.
机译:本文开发了一种新颖的坐标转换方法(CT方法),利用该方法将GPS / INS系统局部切线框架的定向角(滚动,俯仰,航向)转换为坐标系的转换角(ω,phi,kappa)。直接地理配准(DG)的地图投影框。特别是,地图投影框中的定向角是从一系列坐标转换中得出的。通过使用经验数据与常规方法(Legat方法1和POSPAc方法2)获得的DG结果进行比较,验证了定向角变换的有效性。此外,CT方法还通过仿真数据进行了验证。所提出的方法的一个优点是,在通过坐标变换计算外部取向(EO)参数的位置元素和辅助点坐标的同时,可以同时获取取向角。使用经验数据对这三种方法进行了演示和比较。实验结果表明,CT方法与Legat方法一样有效且有效。与POSPac方法相比,CT方法更适合于计算地图投影帧中DG的EO参数。 CT方法和Legat方法的DG精度处于同一水平。这三种方法的DG结果由于在垂直和水平分量中不一致的长度投影失真而导致高度出现系统误差,而使用Legat方法的EO高度校正技术可以显着减少这些误差。与从经验数据获得的结果相似,CT方法的有效性也由模拟数据证明。

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