中国空间科学技术 ›› 2025, Vol. 45 ›› Issue (5): 170-182.doi: 10.16708/j.cnki.1000-758X.2025.0084

• 论文 • 上一篇    

一种复杂场景下的间歇采样转发干扰抑制方法

王林茜,魏振*,回征   

  1. 空间电子信息技术研究院,西安710000
  • 收稿日期:2024-08-26 修回日期:2024-12-26 录用日期:2024-12-30 发布日期:2025-09-17 出版日期:2025-10-25

An interrupted sampling repeater jamming suppression algorithm in complex scenarios

WANG Linxi,WEI Zhen*,HUI Zheng   

  1. China Academy of Space Technology (Xi’an),Xi’an 710000,China
  • Received:2024-08-26 Revision received:2024-12-26 Accepted:2024-12-30 Online:2025-09-17 Published:2025-10-25

摘要: 间歇采样转发干扰(InterruptedSampling Repeater Jamming,ISRJ)是近年来雷达系统面临的一种极具威胁性的脉内转发干扰,干扰幅度大,严重影响雷达对目标的探测跟踪水平,因此ISRJ干扰抑制技术成为雷达对抗领域的研究热点。针对“多干扰+强弱干扰共存”的复杂场景,提出了一种基于时频分析的ISRJ干扰抑制改进算法。首先,通过去斜和时域对齐的方法降低干扰的时域占空比,其次,通过时频图像二值化处理进一步降低噪声影响,提高目标和干扰的检出概率,然后,根据短时傅里叶时频分析在时间维度的累积特征剔除目标成分,设计相应的带通滤波器滤除ISRJ干扰,最后,对去斜的目标回波恢复斜率,完成目标信号的重构。此外,进行了多组仿真实验,在不同信噪比以及不同强度组合ISRJ干扰场景下验证了所提算法的有效性及稳健性,并以现有两种经典算法作为对照组,对比验证了所提算法的更为优越的干扰抑制性能。仿真结果表明,所提算法可以有效抑制不同类型和不同强度的ISRJ干扰,脉压结果中的信噪比改善因子可以提高至20dB以上,明显优于两种对照算法。随着信噪比的提高,所提算法的抗干扰性能也逐步提高。所提算法对于ISRJ干扰抑制具有良好的实用性,为后续宽、窄带雷达对抗领域中的侦察和干扰系统设计提供重要参考,对提高雷达探测效能以及掌握复杂电磁环境中的信息制霸权具有十分重要的意义。

关键词: 间歇采样转发干扰, 干扰抑制, 线性调频, 时频分析, 二值化

Abstract: Interrupted sampling repeater jamming(ISRJ) is a very threatening intra-pulse forwarding interference faced by radar systems in recent years. Through interrupted sampling and time-sharing forwarding technology, the jammer repeats the process of "intercept-slice-forward" in the jamming period. The sampling, storage and forwarding of intercepted radar signals can produce multiple false targets in the current repetition period, and the interference amplitude is strong, which seriously affects the radar's detection and tracking level of targets. Therefore, ISRJ suppression technology has become a research hotspot in the field of radar countermeasures.An improved ISRJ suppression algorithm based on time-frequency analysis is proposed for the complex scenario of "multi-interference & strong and weak interference coexistence". Firstly, the time-domain duty cycle of jamming is reduced by dechirp and time-domain alignment; secondly, the impact of noise is further reduced by time-frequency image binarization and thedetection probability of target and jamming is improved; then, target components are eliminated according to the cumulative characteristics of short-time Fourier time-frequency analysis in the time dimension, and the corresponding bandpass filter is designed to remove ISRJ; finally, the target signal is reconstructed by recovering the slope of the dechirped target echo. In addition, a number of simulation experiments are conducted to verify the effectiveness and robustness of the proposed algorithm under different SNR and different intensity combined ISRJ scenarios. Two existing classical algorithms are used as control groups to compare and verify the superior jamming suppression performance of the proposed algorithm.Simulation results show that the proposed algorithm can adapt to different SNR, and the jamming suppression ability is obviously better than the two control algorithms, and both remain at a high level. With the increase of SNR, jamming suppression performance of the proposed algorithm is also gradually improved. The proposed algorithm can adapt to the jamming of different intensity combinations, especially in the scene containing weak jamming, through the analysis and processing of time-frequency domin, the weak jamming components are effectively eliminated, and the improvement factor of the SIR is greatly improved.The proposed algorithm has good practicability for ISRJ suppression, and provides an important reference for the subsequent reconnaissance and jamming system design in the field of wide and narrow band radar countermeasures. It is of great significance for improving radar detection efficiency and grasping information control dominance in complex electromagnetic environment.

Key words: interrupted sampling repeater jamming, jamming suppression, linear frequency modulation, time-frequency analysis, binarization