Hanssen L M
Appl Opt. 1996 Jul 1;35(19):3597-606. doi: 10.1364/AO.35.003597.
The effects of non-Lambertian scattering of the interior wall of an integrating sphere are examined through a sphere simulation model. The model employs Monte Carlo techniques. A sphere used for measurement of directional-hemispherical reflectance is modeled. The simulation allows sphere wall scattering to vary from perfectly Lambertian to perfectly specular in steps. The results demonstrate that significant measurement error can result as the scattering deviates from the Lambertian ideal. The error is found to be a strong function of the wall reflectance value as well: it is minimized for reflectances approaching 1.0 and increases as the reflectance value decreases to the minimum value examined of 0.5. The magnitudes of the errors associated with non-Lambertian scattering are also shown to be relatively independent of the specific field of view of the detector used in the measurement.
通过球体模拟模型研究了积分球内壁非朗伯散射的影响。该模型采用蒙特卡罗技术。对用于测量定向半球反射率的球体进行建模。模拟允许球体壁散射以步长从完全朗伯型变化到完全镜面型。结果表明,当散射偏离朗伯理想状态时,会导致显著的测量误差。还发现该误差也是壁反射率值的强函数:对于接近1.0的反射率,误差最小,并且随着反射率值减小到所研究的最小值0.5,误差会增加。与非朗伯散射相关的误差大小也显示出相对独立于测量中使用的探测器的特定视场。