Zou Yangyang, Zhang Liu, Zhang Jian, Cui Jicheng
Appl Opt. 2022 Mar 20;61(9):2275-2283. doi: 10.1364/AO.454723.
A synchronous multi-angle scattered light field measurement system is constructed in this study to overcome issues with current systems in the field of multi-angle remote sensing. A mathematical model of the scattered light field measurement was established. An off-axis catadioptric optical system was designed to satisfy hemispheric spatial scattered light field measurements in a zenith angle range of 68°. The off-axis calibration model was established, and the spatial relationship was calibrated. The measurement accuracy was calibrated via an integrating sphere light source, and the maximum measurement relative error was -3.71. The scattered light field of the reference diffuse reflective target plate Labsphere Permaflect-50 and 304 stainless steel was simulated under an incident light irradiation range within the zenith angle of -23.5 to +23.5, and synchronous measurement of the multi-angle scattered light field of the sample was realized. The measurement system could provide technical support for building the complex model of multi-angle reflection/radiation from the earth's surface, multi-angle sensor radiation calibration, and improvement of the physical parameter inversion accuracy of observation targets.
本研究构建了一种同步多角度散射光场测量系统,以克服当前多角度遥感领域系统存在的问题。建立了散射光场测量的数学模型。设计了一种离轴折反射光学系统,以满足在68°天顶角范围内的半球空间散射光场测量。建立了离轴校准模型,并对空间关系进行了校准。通过积分球光源校准了测量精度,最大测量相对误差为-3.71。在天顶角为-23.5至+23.5的入射光照射范围内,模拟了参考漫反射目标板Labsphere Permaflect-50和304不锈钢的散射光场,并实现了对样品多角度散射光场的同步测量。该测量系统可为构建地表多角度反射/辐射复杂模型、多角度传感器辐射校准以及提高观测目标物理参数反演精度提供技术支持。