For real-time jamming signal generation in deceiving inverse synthetic aperture radar(ISAR),the target characteristics modulation is always processed in the expensive field programmable gate array(FPGA).Due to the...For real-time jamming signal generation in deceiving inverse synthetic aperture radar(ISAR),the target characteristics modulation is always processed in the expensive field programmable gate array(FPGA).Due to the large computational complexity of the traditional modulating operation,the size and structure of simulated false-target are limited.With regard to the principle of dechirping in range compression of linear frequency modulated(LFM) radar,a novel algorithm named "inverse dechirping" is proposed for target characteristics modulation.This algorithm only needs one complex multiplier in the FPGA to generate the jamming signal when the radar signal is intercepted,which can be obtained by multiplication of radar signal samplings and the equivalent dechirped target echo in the time domain.As the complex synthesis of dechirped target echo can be realized by cheap digital signal processor(DSP) within the interpulse time,the overall cost of the jamming equipment will be reduced and the false-target size will not be limited by the scale of FPGA.Numerical simulations are performed to verify the correctness and effectiveness of the proposed algorithm.展开更多
通过对Wigner-Ville分布(WVD)和Radon变换的详细分析,提出了一种基于Radon-Wigner变换的参数估计仿真算法,这种算法通过对信号WVD所得二维函数矩阵的行列按一定比例扩展,再对扩展后的矩阵进行Radon变换,从而实现了线性调频信号(linear f...通过对Wigner-Ville分布(WVD)和Radon变换的详细分析,提出了一种基于Radon-Wigner变换的参数估计仿真算法,这种算法通过对信号WVD所得二维函数矩阵的行列按一定比例扩展,再对扩展后的矩阵进行Radon变换,从而实现了线性调频信号(linear frequency modulation,LFM)信号的Radon-Wigner变换。该算法具有快速性、精确性好的特点,对多分量的LFM信号进行详细的仿真分析,仿真结果表明,该算法与解线调方式得到的仿真算法对比,速度有较大幅度的提高。展开更多
基金supported by the National Natural Science Foundation of China(6127144261401481)
文摘For real-time jamming signal generation in deceiving inverse synthetic aperture radar(ISAR),the target characteristics modulation is always processed in the expensive field programmable gate array(FPGA).Due to the large computational complexity of the traditional modulating operation,the size and structure of simulated false-target are limited.With regard to the principle of dechirping in range compression of linear frequency modulated(LFM) radar,a novel algorithm named "inverse dechirping" is proposed for target characteristics modulation.This algorithm only needs one complex multiplier in the FPGA to generate the jamming signal when the radar signal is intercepted,which can be obtained by multiplication of radar signal samplings and the equivalent dechirped target echo in the time domain.As the complex synthesis of dechirped target echo can be realized by cheap digital signal processor(DSP) within the interpulse time,the overall cost of the jamming equipment will be reduced and the false-target size will not be limited by the scale of FPGA.Numerical simulations are performed to verify the correctness and effectiveness of the proposed algorithm.
文摘通过对Wigner-Ville分布(WVD)和Radon变换的详细分析,提出了一种基于Radon-Wigner变换的参数估计仿真算法,这种算法通过对信号WVD所得二维函数矩阵的行列按一定比例扩展,再对扩展后的矩阵进行Radon变换,从而实现了线性调频信号(linear frequency modulation,LFM)信号的Radon-Wigner变换。该算法具有快速性、精确性好的特点,对多分量的LFM信号进行详细的仿真分析,仿真结果表明,该算法与解线调方式得到的仿真算法对比,速度有较大幅度的提高。