To solve the problem of low recognition rate of interrupted-sampling and repeater jamming, a method of jamming recognition based on short-time fractional Fourier transform(STFRFT) was proposed. In order to reduce the complexity of feature extraction in time-frequency domain, the time-frequency domain was reduced to fractional Fourier transform(FRFT) domain and time domain based on maximum search and slice after STFRFT was used to interrupted-sampling and repeater jamming. Feature parameters contained the number of spectrum peaks in FRFT domain, and the number of pulses in time domain after dimensionality reduction. For three typical kinds of interrupted-sampling and repeater jamming, simulation result shows that a satisfactory recognition effect is achieved when the jamming-to-noise ratio is greater than -4 dB.
表 1 仿真参数设置Table 1 Simulation parameter setting
图1 间歇采样直接转发干扰Fig.1 Interrupted-sampling and direct repeater jamming
图2 间歇采样重复转发干扰Fig.2 Interrupted-sampling and periodic repeater jamming
图3 间歇采样循环转发干扰Fig.3 Interrupted-sampling and cyclic repeater jamming
图4 间歇采样转发干扰识别流程图Fig.4 Recognition flow chart of interrupted-sampling and repeater jamming
图5 间歇采样转发干扰FRFT幅度图Fig.5 FRFT amplitude spectrum of interrupted-sampling and repeater jamming
图6 ISPJ两峰值点沿时间轴的脉冲分布幅度图Fig.6 Time domain amplitude of two peaks of ISPJ
图7 ISCJ两峰值点沿时间轴的脉冲分布幅度图Fig.7 Time domain amplitude of two peaks of ISCJ
图8 间歇采样转发干扰不同干噪比下识别率Fig.8 Recognition rate of ISRJ at different JNRs
图9 间歇采样转发干扰不同信噪比下平均识别率Fig.9 Recognition rate of ISRJ at different SNRs
图10 间歇采样转发干扰不同干信比下平均识别率Fig.10 Recognition rate of ISRJ at different JSRs