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Terrestrial laser scanner intensity correction for the incidence angle effect on surfaces with different colours and sheens

机译:地面激光扫描仪强度校正,以校正具有不同颜色和光泽的表面上的入射角效应

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摘要

Laser scanning intensity captures information about the reflectance of target-surfaces and is used for a variety of applications such as data registration, classification, object detection and recognition. To enhance its utility, intensity values often undergo a correction process, which reduces the influence of nuisance parameters on recorded intensity (often range and incidence angle). This study applies and tests the Torrance-Sparrow model to correct intensity for the incidence angle effect in terrestrial laser scanning. Main components of the Torrance-Sparrow model are the geometrical attenuation (G) and microfacet distribution functions (D). Four models of geometrical attenuation and microfacet distribution functions are evaluated, namely, (i) Beckmann, (ii) Trowbridge-Reitz, (iii) GGX, and (iv) shifted gamma distribution (SGD). These models provide different derivations of the functions G and D, which estimate parameters necessary for the Torrance-Sparrow model. Target-surfaces scanned from various incidence angles are used for the assessment. These are painted with eight different colours (white, yellow, red, green, blue, grey, brown, and black) and two sheens (flat and semi-gloss), which create different reflection characteristics (diffuse and specular). Numerical and visual evaluations show that all four models manage to model the specular reflection component of the semi-gloss sheen target-surfaces for all tested colours. However, in flat-sheen surfaces, the Beckmann and SGD models show inferior modelling than GGX and Trowbridge-Reitz for brown, grey, and black colours. In addition, a relative comparison of the roughness parameters and Fresnel factors showed that only the Trowbridge-Reitz model produced reasonable values, based on encountered surface characteristics. Application of the Trowbridge-Reitz model in independent point-cloud data shows how intensity values can be corrected for the incidence angle effect in real cases.
机译:激光扫描强度捕获有关目标表面反射率的信息,并用于各种应用程序,例如数据注册,分类,物体检测和识别。为了增强其实用性,强度值经常经过校正过程,从而减少了有害参数对记录的强度(通常是范围和入射角)的影响。本研究应用并测试了Torrance-Sparrow模型,以校正地面激光扫描中入射角效应的强度。 Torrance-Sparrow模型的主要组件是几何衰减(G)和微面分布函数(D)。评估了几何衰减和微面分布函数的四个模型,即(i)Beckmann,(ii)Trowbridge-Reitz,(iii)GGX和(iv)位移伽马分布(SGD)。这些模型提供了函数G和D的不同推导,这些推导估计了Torrance-Sparrow模型所需的参数。从各种入射角扫描的目标表面用于评估。它们被涂上八种不同的颜色(白色,黄色,红色,绿色,蓝色,灰色,棕色和黑色)和两种光泽(平面和半光泽),它们产生不同的反射特性(漫反射和镜面反射)。数值和视觉评估表明,对于所有测试颜色,所有四个模型都可以对半光泽光泽目标表面的镜面反射分量进行建模。但是,在平坦的表面上,对于棕色,灰色和黑色,Beckmann和SGD模型的建模效果比GGX和Trowbridge-Reitz差。此外,粗糙度参数和菲涅耳因子的相对比较表明,根据遇到的表面特性,只有Trowbridge-Reitz模型产生合理的值。 Trowbridge-Reitz模型在独立点云数据中的应用显示了在实际情况下如何针对入射角效应校正强度值。

著录项

  • 来源
    《International journal of remote sensing》 |2019年第18期|7169-7189|共21页
  • 作者

    Bolkas D.;

  • 作者单位

    Penn State Univ, Dept Surveying Engn, Wilkes Barre Campus,1269 Old Route 115, Lehman, PA 18627 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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