吴雄雄, 王惠林, 宁飞, 张文博, 刘吉龙, 王明超. 大气湍流对航空光电侦察图像质量影响因素分析[J]. 应用光学, 2022, 43(1): 1-8. DOI: 10.5768/JAO202243.0101001
引用本文: 吴雄雄, 王惠林, 宁飞, 张文博, 刘吉龙, 王明超. 大气湍流对航空光电侦察图像质量影响因素分析[J]. 应用光学, 2022, 43(1): 1-8. DOI: 10.5768/JAO202243.0101001
WU Xiongxiong, WANG Huilin, NING Fei, ZHANG Wenbo, LIU Jilong, WANG Mingchao. Influencing factors of atmospheric turbulence on image quality of aerial photoelectric reconnaissance[J]. Journal of Applied Optics, 2022, 43(1): 1-8. DOI: 10.5768/JAO202243.0101001
Citation: WU Xiongxiong, WANG Huilin, NING Fei, ZHANG Wenbo, LIU Jilong, WANG Mingchao. Influencing factors of atmospheric turbulence on image quality of aerial photoelectric reconnaissance[J]. Journal of Applied Optics, 2022, 43(1): 1-8. DOI: 10.5768/JAO202243.0101001

大气湍流对航空光电侦察图像质量影响因素分析

Influencing factors of atmospheric turbulence on image quality of aerial photoelectric reconnaissance

  • 摘要: 大气湍流效应是严重影响航空光电侦察系统图像质量的重要因素之一。从大气湍流参数描述出发,研究了大气湍流对光学系统成像质量的影响机理,分析了大气湍流影响光学系统调制传递函数(modulation transfer function,MTF)的影响因素,建立了大气湍流影响光学系统成像MTF的理论模型。仿真结果表明,在大气湍流影响下,光学系统光瞳口径与大气相干直径的比值对光学系统成像MTF影响较大。通过光学系统地面外场实验图像测试对比,验证了实际光学系统受到大气湍流影响后的成像MTF理论模型。研究结果可为大气湍流影响下的航空光电侦察系统设计及提升其成像质量提供理论支持。

     

    Abstract: The atmospheric turbulence effect is one of the important factors that seriously affect the image quality of aerial photoelectric reconnaissance system. Starting from the description of atmospheric turbulence parameters, the influence mechanism of atmospheric turbulence on the imaging quality of optical system was researched, the influencing factors of atmospheric turbulence on the modulation transfer function (MTF) of optical system were analyzed, and the theoretical model of atmospheric turbulence on the imaging MTF of optical system was established. The simulation results show that under the influence of atmospheric turbulence, the ratio of optical system pupil aperture to atmospheric coherence diameter has a great influence on the imaging MTF. By comparing the ground field experimental images of the optical system, the imaging MTF theoretical model of the actual optical system affected by atmospheric turbulence was verified. The research results can provide theoretical supports for the design of aerial photoelectric reconnaissance system and the improvement of imaging quality under the influence of atmospheric turbulence.

     

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