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Metrological issues related to BRDF measurements around the specular direction in the particular case of glossy surfaces

机译:与BRDF测量有关的计量问题,在光盘表面的特定情况下围绕镜面方向

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Among the complete bidirectional reflectance distribution function (BRDF), visual gloss is principally related to physical reflection characteristics located around the specular reflection direction. This particular part of the BRDF is usually referred to as the specular peak. A good starting point for the physical description of gloss could be to measure the reflection properties around this specular peak. Unfortunately, such a characterization is not trivial, since for glossy surfaces the width of the specular peak can become very narrow (typically a full width at half maximum inferior to 0.5° is encountered). In result, new BRDF measurement devices with a very small solid angle of detection are being introduced. Yet, differences in the optical design of BRDF measurement instruments engender different measurement results for the same specimen, complicating direct comparison of the measurement results. This issue is addressed in this paper. By way of example, BRDF measurement results of two samples, one being matte and the other one glossy, obtained by use of two high level goniospectrophotometers with a different optical design, are described. Important discrepancies in the results of the glossy sample are discussed. Finally, luminance maps obtained from renderings with the acquired BRDF data are presented, exemplifying the large visual differences that might be obtained. This stresses the metrological aspects that must be known for using BRDF data. Indeed, the comprehension of parameters affecting the measurement results is an inevitable step towards progress in the metrology of surface gloss, and thus towards a better metrology of appearance in general.
机译:在完整的双向反射率分布函数(BRDF)中,视觉光泽主要与位于镜面反射方向周围的物理反射特性相关。这种特定部分BRDF通常称为镜面峰。光泽物理描述的良好起点可能是测量该镜面峰周围的反射特性。遗憾的是,这种表征并不是微不足道的,因为对于光泽表面,镜面峰的宽度可以变得非常窄(通常遇到半最大宽度为0.5°的全宽度)。结果,正在引入具有非常小的固体检测角的新BRDF测量装置。然而,BRDF测量仪器光学设计的差异与相同的样本产生不同的测量结果,使测量结果的直接比较复杂化。本文已解决此问题。举例来说,描述了通过使用具有不同光学设计的两个高水平的巨型分光光度计获得的两个样品的BRDF测量结果,一个是哑光和另一个光泽的哑光光学计。讨论了光泽样本结果中的重要差异。最后,提出了利用所获取的BRDF数据获得的亮度映射,示例了可以获得的大的视觉差异。这强调了使用BRDF数据必须知道的计量方面。实际上,对影响测量结果的参数的理解是朝着表面光泽度计量进展的必然步骤,从而朝着更好的外观计量。

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