基于偏振微面元理论的红外偏振特性研究
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光学辐射重点实验室 北京环境特性研究所,光学辐射重点实验室 北京环境特性研究所,北京理工大学光电学院 “光电成像技术与系统”教育部重点实验室,光学辐射重点实验室 北京环境特性研究所

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国家重点基础研究发展计划(973计划)


Research of infrared polarization characteristics based on polarization micro-surface theory
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Science and Technology on Optical Radiation Laboratory, Beijing,China,Science and Technology on Optical Radiation Laboratory, Beijing,China,School of Optoelectronics,Beijing Institute of Technology,Key Laboratory of Photo-electronic Imaging Technology and System,Ministry of Education of China,Science and Technology on Optical Radiation Laboratory, Beijing,China

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    摘要:

    针对基于金属线栅偏振片的红外偏振成像系统组成, 需要考虑目标、大气、天空、偏振片的反射和自身辐射的影响, 进而有效分析进入成像系统的红外偏振辐射组成。文章通过偏振微面元理论的散射函数模型, 推导红外偏振辐射传输方程的Stokes表达式, 得出红外偏振信息(偏振度、偏振角)与目标表面粗糙度、折射率、反射和观测角度等参数的数学模型, 通过合理简化偏振信息表达式, 仿真得出某材料的偏振度曲线与文献中实测数据基本一致, 为进一步提高红外偏振成像系统的探测性提供理论依据和技术支持。

    Abstract:

    Aiming at the elements of infrared polarization imaging system based on metal wire-grid polarizer, a lot of affecting factors such as target, atmosphere, sky, polarizer reflect and radiate itself should be take into accounted, which is favorable for analyzing the infrared polarization radiation constitutes entering into the imaging system. Based on the bidirectional reflectance distribution function model, the paper establishes transmission equation of infrared polarized radiation that includes reflection and emission, and we deduces the mathematical model with respect to a lot of factors of the degree and the angle of polarization. By simplifying the formula of degree of polarization reasonable, the simulated curves of degree of polarization are consistent with the measured date in references. The result of this paper can afford gist theory and techno-gsustain for improving the detection capability of infrared polarization imaging system.

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陈伟力,王淑华,金伟其,李军伟.基于偏振微面元理论的红外偏振特性研究[J].红外与毫米波学报,2014,33(5):507~514]. CHEN Wei-Li, WANG Shu-Hua, JIN Wei-Qi, LI Jun-Wei. Research of infrared polarization characteristics based on polarization micro-surface theory[J]. J. Infrared Millim. Waves,2014,33(5):507~514.]

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  • 收稿日期:2013-03-20
  • 最后修改日期:2013-07-08
  • 录用日期:2013-07-09
  • 在线发布日期: 2014-11-12
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