Synthetic aperture optical system design for low-altitude detection

J. Chen, A. Tian, Mengyao Zhang
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Abstract

To improve the recognition ability of optical imaging system for UAV (unmanned aerial vehicle) target, a synthetic aperture optical imaging system is proposed and designed. Firstly, according to the target size and detection distance the desired parameter indexes of the optical system are confirmed; Secondly, the suitable systematic structure is selected and the initial structure parameters are analyzed; finally, through the optimization of the Zemax software, the spatial resolution of the system at visible wavelength can reach 0.5mrad/pixel, and the detection distance of typical UAV targets in the air achieves 2km. Comparing with the high processing cost of single large optical components in traditional optical system, the design method of the synthetic aperture optical system is feasible, and the processing cost of small aperture optical components can be saved effectively.
低空探测合成孔径光学系统设计
为了提高光学成像系统对无人机(UAV)目标的识别能力,提出并设计了一种合成孔径光学成像系统。首先,根据目标尺寸和检测距离确定光学系统所需的参数指标;其次,选择合适的系统结构,分析初始结构参数;最后,通过Zemax软件的优化,使系统在可见光波段的空间分辨率达到0.5mrad/像素,对典型无人机空中目标的探测距离达到2km。与传统光学系统中单个大光学元件加工成本高的问题相比,合成孔径光学系统的设计方法是可行的,并且可以有效地节省小孔径光学元件的加工成本。
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