Research Progress on New Technologies of False Targets
DOI:
https://doi.org/10.54097/1jqwvg54Keywords:
False targets; New technologies; Research progress.Abstract
To counter new detection technologies, decoy technology has evolved from the previous relatively simple combination of camouflage, infrared and radar coatings or materials to a comprehensive technology that integrates 3D simulation technology, new materials, intelligent temperature control, complex electromagnetic countermeasures and multi-dimensional coordinated deception. This paper reviews the simulation decoy technology in the four aspects of visible light, infrared, radar and laser, and summarizes the development trends of new decoy technologies.
Downloads
References
[1] Feng Haichao, Wang Yuenet, Zhang Zeyan, et al. Research on Simulation Technology for Tank False Targets' False Appearance Performance [J]. Science and Technology Innovation, 2022, 21: 169-172.
[2] Feng Haichao, Wang Yuyu, Liu Wei, et al. Simulation Technology for False Appearance Performance of Tank False Targets Based on 3D Modeling [J]. Journal of Ballistics Research, 2021, 42(09): 1998-2003.
[3] Yu Jun, Shuang Xiao, Hu Zhiyi, Su Haitao. Digital Camouflage Technology Based on Optical Camouflage [J]. Computer and Digital Engineering, 2011, 39(12): 142-146.
[4] Hou Lei, Yu Jun, Chen Ding. Research on Evaluation Method of Digital Camouflage Concealment Effect [J]. Foreign Electronic Measurement Technology, 2013, 32(2): 23-25.
[5] Wei Wenbin, Peng Ruihui, Sun Dingsheng, et al. Active False Target Identification Method Based on Multi-phase Processing Interval Frequency Response Feature Clustering [J]. Journal of Electronics & Information Technology, 2024, 46(7): 2721-2731.
[6] Yang Hui, He Chao, Pan Jialiang, et al. Application of Electrothermal Coatings in Infrared False Appearance [J]. Journal of Ballistics Research, 2021, 42(1): 118-123.
[7] Fan Fan, Tian Changhui, Yang Baiyu, et al. Research on Transformation Relaxation Time of Infrared False Target Arrays Based on Resistance Arrays [J]. Journal of Electronic Engineering Institute, 2019, 8(5): 119-122.
[8] Chen Hongye, Simulation of Infrared Images Based on Electrothermal Film. Infrared Technology [J]. 2013,35(10):650-653.
[9] Zhong Guozhi, Liao Shouyi, Yang Xinqie, et al. Real-time Generation of Battlefield Environment Infrared Images Based on JRM [J]. Infrared Technology, 2023, 46(2): 183-189.
[10] Qiu Yongjia, Cheng Zhengdong, Zhao Dapeng, et al. Evaluation of Interference Efficacy of False Targets Based on GBVS for Infrared Deception [J]. Laser and Optical Electronics Progress, 2023, 60(12): 1-6.
[11] Ning Yuhang. Experimental Research on Synthetic Multi-Antenna False Target Electromagnetic Interference Model [D]. University of Electronic Science and Technology of China, 2022.
[12] Zhao Yuan, Xiangchang Array Radar and Networking Anti-Active False Target and False Track Method Research [J]. 2019, 19-20.
[13] Zhao Kai, Wei Guangui, Wang Tao, et al. Feature Analysis of Dual-Frequency Electromagnetic Radiation False Targets in Frequency-Stepped Continuous Wave Radar [J]. System Engineering and Electronics Technology, 2023. 45(5): 1315-1322.
[14] Fu Lianjian. Distance-Angle Joint Deception Interference Method for Radar Tracking Countermeasures [D]. University of Electronic Science and Technology of China, 2023.
[15] Yang Aiping, Hu Zehui, Sheng Shaosong, et al. Research on Pseudo-Random Doppler False Targets Interference for STAP Radar [J]. Ship Electronic Countermeasures, 2023, 46(4): 14-18.
[16] Zhao Ruilang, Lu Jianye, Chen Wei, et al. Research on Generation of Dense False Targets and Feature Vector Extraction [J]. Image and Signal Processing, 2022, 11(2): 68-78.
[17] Shen Tao, Liu Zhiguo, Gou Xiaotao, et al. Research on Configuration Method of Laser Protective False Targets for Long-shaped Military Targets [J]. Laser and Infrared, 2021, 46(8): 989-993.
[18] Xin Cheng, Wang Yafu, Zhou Quan, et al. Research on Deployment Problems of Laser False Targets under Terrain Conditions [J]. Laser and Infrared, 2017. 47(7): 875-878.
[19] Huang Jianshe, Shen Tao, Yang Yang, et al. Research on Selection of Natural Landmarks for False Targets in Laser Angle Deception Interference [J]. Optics and Spectroscopy Analysis, 2022, 42(9): 2965-2966.
[20] Ji Qiang, Zong Siguang, Yang Jianbo, et al. Research and Design of New-Type Laser False Targets [J]. Laser and Infrared, 2022, 51(9): 1212-1216.
[21] Lu Song, Yang Wen, Yang Baocui, et al. Research on Deployment Method of Laser Angle Deception False Targets without Overhead Zone [J]. Optics and Photoelectric Technology, 2016, 14(5): 38-41.
Downloads
Published
Issue
Section
License
Copyright (c) 2025 Academic Journal of Science and Technology

This work is licensed under a Creative Commons Attribution 4.0 International License.








