Sun HongYu, Yang Di, Zhang Qing, Liu XuanWei, Fu Qiang, Liu Qing, Zhu ZhaoKun, Shi HaoDong, Wang Fang, Li YingChao, Tan Yu
School of Optoelectronic Engineering, Changchun University of Science and Technology, Changchun, 130022, China.
Beijing Institute of Tracking and Telecommunication Technology, Beijing, 100094, China.
Sci Rep. 2023 Sep 14;13(1):15251. doi: 10.1038/s41598-023-41732-y.
The pBRDF model is able to relate the properties of target materials to the polarization information of incident and reflected light, and is an important basis for obtaining polarization information of targets in space. It is an important basis for obtaining target polarization information and polarization detection of space targets. P-G model is the first strictly pBRDF model officially released, but there are still deficiencies. In this paper, we first analyze the assumption framework of the P-G model, derive the imperfections in the framework through the analysis of the assumption framework, and add scattering and phase function to enhance the existing model. On the basis of the existing P-G model and parameter inversion, the output results of the model are compared with the experimental data through simulation, and the results show that the relative error of the target's linear polarizability is reduced under the improved model, which proves the accuracy and precision of the improved model.
pBRDF模型能够将目标材料的特性与入射光和反射光的偏振信息联系起来,是获取空间目标偏振信息的重要基础。它是获取目标偏振信息和进行空间目标偏振探测的重要基础。P-G模型是首个正式发布的严格意义上的pBRDF模型,但仍存在不足。本文首先分析了P-G模型的假设框架,通过对假设框架的分析推导框架中的不完善之处,并添加散射和相位函数对现有模型进行增强。在现有P-G模型及参数反演的基础上,通过仿真将模型输出结果与实验数据进行比较,结果表明改进后的模型下目标线性极化率的相对误差减小,证明了改进模型的准确性和精度。