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How to Efficiently Determine the Range Precision of 3D Terrestrial Laser Scanners

机译:如何有效确定3D地面激光扫描仪的距离精度

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摘要

As laser scanning technology has improved a lot in recent years, terrestrial laser scanners (TLS) have become popular devices for surveying tasks with high accuracy demands, such as deformation analyses. For this reason, finding a stochastic model for TLS measurements is very important in order to get statistically reliable results. The measurement accuracy of laser scanners—especially of their rangefinders—is strongly dependent on the scanning conditions, such as the scan configuration, the object surface geometry and the object reflectivity. This study demonstrates a way to determine the intensity-dependent range precision of 3D points for terrestrial laser scanners that measure in 3D mode by using range residuals in laser beam direction of a best plane fit. This method does not require special targets or surfaces aligned perpendicular to the scanner, which allows a much quicker and easier determination of the stochastic properties of the rangefinder. Furthermore, the different intensity types—raw and scaled—intensities are investigated since some manufacturers only provide scaled intensities. It is demonstrated that the intensity function can be derived from raw intensity values as written in literature, and likewise—in a restricted measurement volume—from scaled intensity values if the raw intensities are not available.
机译:近年来,随着激光扫描技术的改进,陆上激光扫描仪(TLS)已成为用于测量具有高精度要求的任务(例如变形分析)的流行设备。因此,为了获得统计上可靠的结果,找到用于TLS测量的随机模型非常重要。激光扫描仪(尤其是其测距仪)的测量精度在很大程度上取决于扫描条件,例如扫描配置,物体表面几何形状和物体反射率。这项研究演示了一种方法,该方法通过使用最佳平面拟合的激光束方向上的距离残差来确定以3D模式进行测量的地面激光扫描仪的3D点的强度相关距离精度。此方法不需要垂直于扫描仪对齐的特殊目标或表面,从而可以更快,更轻松地确定测距仪的随机特性。此外,由于某些制造商仅提供按比例缩放的强度,因此研究了不同强度类型(原始和按比例缩放)的强度。已经证明,强度函数可以从文献中所写的原始强度值中得出,如果没有原始强度,同样可以(在有限的测量体积中)从缩放强度值中得出。

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