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INVESTIGATING ADJUSTMENT OF AIRBORNE LASER SCANNING STRIPS WITHOUT USAGE OF GNSS/IMU TRAJECTORY DATA

机译:调查空气激光扫描条的调整,而不使用GNSS / IMU轨迹数据

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Airborne laser scanning (ALS) requires GNSS (Global Navigation Satellite System; e.g. GPS) and an IMU (Inertial Measurement Unit) for determining the dynamically changing orientation of the scanning system. Because of small but existing instabilities of the involved parts - especially the mounting calibration - a strip adjustment is necessary in most cases. In order to realize this adjustment in a rigorous way the GNSS/IMU-trajectory data is required. In some projects this data is not available to the user (any more). Derived from the rigorous model, this article presents a model for strip adjustment without GNSS/IMU-trajectory data using five parameters per strip: one 3D shift, one roll angle, and one affine yaw parameter. In an example with real data consiting of 61 strips this model was successfully applied leading to an obvious improvement of the relative accuracy from (59.3/23.4/4.5) [cm] to (7.1/7.2/2.2) (defined as RMS values in (X/Y/Z) of the differences of corresponding points derived by least squares matching in the overlapping strips). This example also clearly demonstrates the importance of the affine yaw parameter.
机译:空中激光扫描(ALS)需要GNSS(全球导航卫星系统;例如,GPS)和IMU(惯性测量单元),用于确定扫描系统的动态变化的方向。由于涉及零件的少,但尤其是安装校准 - 在大多数情况下都需要校准。为了以严格的方式实现此调整,需要GNSS / IMU轨迹数据。在某些项目中,该数据不适用于用户(更多)。源自严谨模型,本文介绍了使用每条条带的五个参数的GNSS / IMU-轨迹数据的带有GNSS / IMU轨迹数据的模型:一个3D移位,一个滚动角度和一个仿射偏航参数。在具有61个条带的实际数据的示例中,该模型被成功应用,导致从(59.3 / 23.4 / 4.5)[cm]至(7.1 / 7.2 / 2.2)的相对精度的明显改善(定义为rms值(在重叠条中匹配的最小二乘匹配的相应点的差异x / y / z)。该示例还清楚地表明了仿射偏航参数的重要性。

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