Evaluation method of laser jamming effect based on deep learning

被引:4
作者
Fan Y. [1 ]
Ma X. [1 ]
Ma S. [1 ]
Qian K. [1 ]
Hao H. [1 ]
机构
[1] School of Space Information, Space Engineering University, Beijing
来源
Hongwai yu Jiguang Gongcheng/Infrared and Laser Engineering | 2021年 / 50卷
关键词
Deep learning; Effect evaluation; Laser jamming; YOLOV5; algorithm;
D O I
10.3788/IRLA20210323
中图分类号
学科分类号
摘要
Aiming at the problem that the evaluation of laser jamming effect is influenced by subjective experience and difficult to evaluate quantitatively, a laser jamming effect evaluation method based on deep learning was proposed. Firstly, the overall introduction of the YOLOV5 algorithm was given. Secondly, 3 020 laser jamming image from different angles and distances were produced. Then, the labeled data sets were trained to obtain the laser jamming effect evaluation model. Finally, the model was trained 300 times under the network models of YOLOV5x, YOLOV5l, YOLOV5m and YOLOV5s respectively. The experimental results show that the trained model can be used to evaluate the effect of laser interference image. The model could not only automatically label the laser interference area and evaluate the interference effect level, but also integrate the traditional strategy. It could calculate the area of the labeled area in the whole image as an auxiliary decision. The percentage of laser jamming area was automatically marked. The recognition accuracy was more than 80%, which is of great significance to the evaluation of laser jamming effect. © 2021, Editorial Board of Journal of Infrared and Laser Engineering. All right reserved.
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相关论文
共 14 条
[1]  
He Xuan, Zhou Bing, Liu Hexiong, Et al., Research status of laser suppression interference assessment, Laser & Infrared, 49, 7, pp. 787-793, (2019)
[2]  
Li Haiyan, Zhu Min, Lv Junwei, Et al., Experiment research and theory analysis for off-axis laser disturbing CCD detection system, Infrared and Laser Engineering, 40, 5, pp. 840-843, (2011)
[3]  
Tang Wei, Wang Rui, Wang Tingfeng, Et al., Laser jamming experiment of varifocal colour CCD imaging system, Infrared and Laser Engineering, 46, 4, (2017)
[4]  
Sun Yunqiang, Cheng Xiang'ai, Wang Fei, Method of quality evaluation aimed at laser-disturbing image, Infrared and Laser Engineering, 30, 5, pp. 659-662, (2007)
[5]  
Qian Fang, Sun Tao, Guo Jin, Et al., Laser interference effect evaluation algorithm based on feature point distribution characteristics, Chinese Journal of Lasers, 41, 5, (2014)
[6]  
Qian Fang, Sun Tao, Guo Jin, Et al., Evaluation of multiframe dynamic interference effects combined with laser power and spot position, Chinese Journal of Lasers, 41, 11, (2014)
[7]  
GAO Run, Niu Chunhui, Li Xiaoying, Et al., Simulation and experimental study of 632 nm laser on CCD interference, Laser & Infrared, 46, 5, pp. 552-557, (2016)
[8]  
Zhang Chao, Zhang Wei, Wang Bin, Et al., Experimental study on the interference of different wavelength lasers on CCD, Laser Technology, 38, 6, pp. 826-829, (2014)
[9]  
Ren Lijun, Research on laser interference effect analysis and evaluation technology of photoelectric imaging system, (2019)
[10]  
Schleijpen R, Heuvel J, Mieremet A L, Et al., Laser dazzling of focal plane array cameras, Proceedings of SPIE, 6543, (2007)