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Intensity data correction based on incidence angle and distance for terrestrial laser scanner

机译:基于入射角和距离的地面激光扫描仪强度数据校正

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摘要

Terrestrial laser scanning (TLS) systems not only convey geometric information but also deliver backscattered intensity data of the scanned targets, which are generally acknowledged as significant observations that involve target reflectance information. Numerous studies have shown the potential of TLS intensity in many applications. However, directly using original intensity data is not recommended because of the existence of radiometric system variations, scan geometry discrepancies, environmental differences, and other factors. Performing radiometric correction is, therefore, indispensable to fully eliminate these effects and to compute target reflectance as accurately as possible. In this study, we investigate the effects of incidence angle and distance on intensity measurements and propose a practical method to eliminate the two effects for different TLS instruments. The results show that incidence angle and distance significantly influence TLS intensity data, and the proposed model with versatility can accurately correct the laser intensity value to eliminate the effects of incidence angle and distance. (C) 2015 Society of Photo-Optical Instrumentation Engineers (SPIE)
机译:地面激光扫描(TLS)系统不仅传达几何信息,而且还传递被扫描目标的反向散射强度数据,通常公认这是涉及目标反射率信息的重要观测结果。大量研究表明,TLS强度在许多应用中具有潜力。但是,由于存在放射线系统变化,扫描几何差异,环境差异和其他因素,因此不建议直接使用原始强度数据。因此,进行辐射校正是必不可少的,以完全消除这些影响并尽可能准确地计算目标反射率。在这项研究中,我们调查了入射角和距离对强度测量的影响,并提出了一种实用的方法来消除不同TLS仪器的两种影响。结果表明,入射角和距离对TLS强度数据有显着影响,所提出的通用性模型可以准确校正激光强度值,从而消除入射角和距离的影响。 (C)2015年光电仪器工程师协会(SPIE)

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