Hu Xin-Li, Gu Xing-Fa, Yu Tao, Zhang Zhou-Wei, Li Juan, Luan Hai-Jun
Guang Pu Xue Yu Guang Pu Fen Xi. 2014 Mar;34(3):735-40.
In recent years, due to changes in atmospheric environment, atmospheric aerosol affection on optical sensor imaging quality is increasingly considered by the load developed departments. Space-based remote sensing system imaging process, atmospheric aerosol makes optical sensor imaging quality deterioration. Atmospheric medium causing image degradation is mainly forward light scattering effect caused by the aerosol turbid medium. Based on the turbid medium radiation transfer equation, the point spread function models were derived contained aerosol optical properties of atmosphere in order to analyze and evaluate the atmospheric blurring effect on optical sensor imaging system. It was found that atmospheric aerosol medium have effect on not only energy decay of atmospheric transmittance, but also the degradation of image quality due to the scattering effect. Increase of atmospheric aerosol optical thickness makes aerosol scattering intensity enhanced, variation of aerosol optical thickness is also strongly influences the point spread function of the spatial distribution. it is because the degradation of aerosol in spatial domain, which reduces the quality of remote sensing image, in particularly reduction of the sharpness of image. Meanwhile, it would provide a method to optimize and improve simulation of atmospheric chain.
近年来,由于大气环境的变化,载荷研制部门越来越重视大气气溶胶对光学传感器成像质量的影响。在天基遥感系统成像过程中,大气气溶胶会使光学传感器成像质量恶化。导致图像退化的大气介质主要是气溶胶浑浊介质引起的前向光散射效应。基于浑浊介质辐射传输方程,推导了包含大气气溶胶光学特性的点扩散函数模型,以分析和评估大气模糊对光学传感器成像系统的影响。研究发现,大气气溶胶介质不仅对大气透过率的能量衰减有影响,而且由于散射效应会导致图像质量下降。大气气溶胶光学厚度的增加会使气溶胶散射强度增强,气溶胶光学厚度的变化也强烈影响点扩散函数的空间分布。这是因为气溶胶在空间域的退化,降低了遥感图像的质量,特别是图像清晰度的降低。同时,这将为优化和改进大气链模拟提供一种方法。