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A method to test differences between additional parameter sets with a case study in terrestrial laser scanner self-calibration stability analysis

机译:一种以地面激光扫描仪自校准稳定性分析为例的测试附加参数集之间差异的方法

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摘要

This paper presents a new method for quantitatively assessing the impact and therefore the significance of differences between sets of additional parameters used to model systematic sensor errors. Focusing on bundle reconstruction at the sensor, simulation-based techniques have recently been proposed as superior methods to standard parameter-space hypothesis testing. This paper experimentally demonstrates the shortcoming of this approach and proposes an improved method that tests the effect of additional parameter differences on object reconstruction, which is generally of primary interest in photogrammetry. Additionally, the arbitrariness in selecting only one or two object space configurations is overcome with the new method by simulating a large number of randomly-generated but realistic control point networks for sensor orientation and a dense grid of points for object reconstruction. The experimental subject of the paper is a Faro 880 terrestrial laser scanner for which 10 sets of calibration parameters have been captured over a 13-month period. While standard parameter-space hypothesis testing indicates the instrument is not stable over this time, the new procedure shows that this is not true in all instances.
机译:本文提出了一种用于定量评估影响的新方法,因此可以定量评估用于建模系统传感器错误的其他参数集之间差异的重要性。专注于传感器的束重建,最近已经提出了基于仿真的技术,作为标准参数空间假设测试的更好方法。本文通过实验证明了这种方法的缺点,并提出了一种改进的方法来测试其他参数差异对对象重建的影响,这在摄影测量学中通常是最主要的兴趣所在。另外,通过模拟大量用于传感器定向的随机生成但现实的控制点网络和用于对象重建的密集点网格,新方法克服了仅选择一个或两个对象空间配置的任意性。本文的实验对象是Faro 880地面激光扫描仪,在13个月的时间内已捕获了10套校准参数。尽管标准参数空间假设测试表明仪器在这段时间内不稳定,但新程序表明并非在所有情况下都如此。

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