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脉间-脉内捷变频雷达抗间歇采样干扰方法
引用本文:刘智星,杜思予,吴耀君,沙明辉,邢孟道,全英汇. 脉间-脉内捷变频雷达抗间歇采样干扰方法[J]. 雷达学报, 2022, 11(2): 301-312. DOI: 10.12000/JR22001
作者姓名:刘智星  杜思予  吴耀君  沙明辉  邢孟道  全英汇
作者单位:西安电子科技大学电子工程学院 西安 710071;北京无线电测量研究所 北京 100854;西安电子科技大学前沿交叉研究院 西安 710071
基金项目:国家自然科学基金(61772397),陕西省杰出青年科学基金(2021JC-23),陕西省科技创新团队(2019TD-002)
摘    要:为提升雷达抗间歇采样干扰的能力,该文根据间歇采样转发干扰收发分时的特点,利用脉间-脉内捷变频波形的“主动”抗干扰优势,提出了一种基于分数阶傅里叶变换的并行干扰抑制方法。首先在时域对被干扰的子脉冲进行提取,并将提取到的信号进行切片处理,然后在分数阶傅里叶域利用窄带滤波器组对干扰进行抑制,最后构造匹配滤波器组进行分段脉冲压缩实现子脉冲积累。理论分析和仿真结果表明,所提方法可以有效对抗不同间歇采样干扰样式组成的多主瓣干扰,在高干信比条件下依然具有良好的抗干扰性能,极大提升了雷达的抗干扰能力。 

关 键 词:电子对抗  频率捷变  间歇采样转发干扰  分数阶傅里叶变换  分段脉冲压缩
收稿时间:2022-01-05

Anti-interrupted Sampling Repeater Jamming Method for Interpulse and Intrapulse Frequency-agile Radar
LIU Zhixing,DU Siyu,WU Yaojun,SHA Minghui,XING Mengdao,QUAN Yinghui. Anti-interrupted Sampling Repeater Jamming Method for Interpulse and Intrapulse Frequency-agile Radar[J]. Journal of Radars, 2022, 11(2): 301-312. DOI: 10.12000/JR22001
Authors:LIU Zhixing  DU Siyu  WU Yaojun  SHA Minghui  XING Mengdao  QUAN Yinghui
Affiliation:1.School of Electronic Engineering, Xidian University, Xi’an 710071, China2.Beijing Institute of Radio Measurement, Beijing 100854, China3.Academy of Advanced Interdisciplinary Research, Xidian University, Xi’an 710071, China
Abstract:To improve radar’s anti-Interrupted Sampling Repeater Jamming (ISRJ) capability, this study proposes a parallel interference suppression method based on the fractional Fourier transform, which uses the “active” anti-jamming capability of the interpulse and intrapulse frequency-agile waveform according to the characteristics of ISRJ transceiver splitting. First, the interfered sub-pulses are extracted in the time domain, and the extracted signals are sliced. Then, the narrowband filter banks are used to suppress the interference in the fractional Fourier domain. Finally, matching filter banks are constructed to achieve subpulse integration by applying segmented pulse compression. The theoretical analysis and simulation results show that the proposed method effectively suppresses multi-mainlobe interferences comprising different types of ISRJ and exhibits good anti-interference performance under a high jamming-to-signal ratio, which considerably improves the anti-jamming capability of the radar. 
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