莫涌超, 刘磊, 钱芸生, 胡朝龙, 拜晓锋, 石峰. 一种改进的微光夜视系统视距探测方程[J]. 应用光学, 2023, 44(4): 887-897. DOI: 10.5768/JAO202344.0406002
引用本文: 莫涌超, 刘磊, 钱芸生, 胡朝龙, 拜晓锋, 石峰. 一种改进的微光夜视系统视距探测方程[J]. 应用光学, 2023, 44(4): 887-897. DOI: 10.5768/JAO202344.0406002
MO Yongchao, LIU Lei, QIAN Yunsheng, HU Chaolong, BAI Xiaofeng, SHI Feng. Improved apparent distance detection model of low-level-lightnight vision system[J]. Journal of Applied Optics, 2023, 44(4): 887-897. DOI: 10.5768/JAO202344.0406002
Citation: MO Yongchao, LIU Lei, QIAN Yunsheng, HU Chaolong, BAI Xiaofeng, SHI Feng. Improved apparent distance detection model of low-level-lightnight vision system[J]. Journal of Applied Optics, 2023, 44(4): 887-897. DOI: 10.5768/JAO202344.0406002

一种改进的微光夜视系统视距探测方程

Improved apparent distance detection model of low-level-lightnight vision system

  • 摘要: 视距是评估微光夜视成像系统性能的一个重要参数。随着微光夜视探测技术的发展,经典视距模型的视距仿真结果与实测结果出现了一些偏差,特别是在10−3 lx低照度条件下视距仿真结果不甚理想,这对微光夜视仪在实际应用中造成了很大的阻碍。针对这一问题,从微光成像系统成像链路的三个环节对经典视距模型进行修正:考虑大气透过率对微光夜视系统视距的影响并对经典视距模型中的大气透过率因子进行修正;基于像增强器噪声因子对视距模型进行修正;考虑人眼视觉传递特性对微光夜视系统视距的影响,在系统的传递函数模型中加入了简化的人眼视觉模型。进而推导出改进的视距模型。结合野外试验数据,验证了改进视距模型的有效性和实用性,这对于微光夜视系统的设计、评估和应用具有一定的指导性意义。

     

    Abstract: Apparent distance is an important parameter to evaluate the performance of low-level-light (LLL) night vision imaging system. With the development of LLL night vision detection technology, the simulation results of the classical apparent distance model show some deviations from the actual measurement data, especially the simulation results are not ideal under the low illumination of 10-3 lx, which causes great obstacles to the practical application of the LLL night vision system. Aiming at this problem, the classical apparent distance model was modified from three aspects: the first is considering the influence of atmospheric transmittance on the apparent distance of LLL night vision system and modifying the atmospheric transmittance factors in the classical apparent distance model, the second is optimizing the apparent distance model based on noise factors of image intensifier, the third is considering the influence of human visual transmission characteristics on the apparent distance of LLL night vision system, and the simplified human visual system was added into the transfer function model of the system. The improved apparent distance model was derived, and its effectiveness as well as practicability were verified by the field test data, which had certain guiding significance for the design, evaluation and application of LLL night vision system.

     

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