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Measurement and modeling of Bidirectional Reflectance Distribution Function (BRDF) on material surface

机译:材料表面双向反射分布函数(BRDF)的测量和建模

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摘要

Measurement and modeling of Bidirectional Reflectance Distribution Function (BRDF) is made to describe optical scattering characteristics of the material surface. A measurement device of BRDF with the ability to real-time measurement is developed by the micro fiber spectrometer and three-dimensional turntables. The measured spectral range is from visible to near infrared with 2.4 nm wavelength resolution. The measured angular range is 0-360° in azimuth angle and 0-85° in zenith angle with 0.01° angle resolution. BRDF measurement on tinfoil and ceramic tile is made and the measurement error is no more than 6.05%. A six-parameter model of BRDF is built according to material surface characteristics. Based on the simulated annealing algorithm, the model parameters of BRDF are obtained through fitting processing of measured data and the maximal fitting error is 9.94%. The results show that the measuring accuracy of BRDF depends on the precision of measuring platform, the sensitivity of measuring instrument and the stability of illuminating light source, and the modeling accuracy of BRDF is closely related to the measured data and optimization modeling method. The measurement and modeling of BRDF may benefit future optical remote sensing, computer graphics and environmental surveillance.
机译:进行双向反射分布函数(BRDF)的测量和建模,以描述材料表面的光散射特性。利用微纤维光谱仪和三维转盘开发了具有实时测量能力的BRDF测量设备。测得的光谱范围是可见光到近红外,波长分辨率为2.4 nm。测得的角度范围为方位角0-360°和天顶角0-85°(角度分辨率为0.01°)。对锡箔和瓷砖进行BRDF测量,测量误差不超过6.05%。根据材料表面特性建立六参数BRDF模型。在模拟退火算法的基础上,通过实测数据的拟合处理得到BRDF的模型参数,最大拟合误差为9.94%。结果表明,BRDF的测量精度取决于测量平台的精度,测量仪器的灵敏度和照明光源的稳定性,BRDF的建模精度与测量数据和优化建模方法密切相关。 BRDF的测量和建模可能会有利于未来的光学遥感,计算机图形学和环境监视。

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