A Unique Method for Detecting and Characterizing Low Probability of Intercept Frequency Hopping Radar Signals by means of the Wigner-Ville Distribution and the Reassigned Smoothed Pseudo Wigner-Ville Distribution

Daniel L. Stevens
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Abstract

Low probability of intercept radar signals, which are may times difficult to detect and characterize, have as their goal ‘to see but not be seen’. Digital intercept receivers are currently moving away from Fourier-based techniques and toward classical time-frequency techniques for analyzing low probability of intercept radar signals. This paper brings forth the unique approach of both detecting and characterizing low probability of intercept frequency hopping radar signals by employing and comparing the Wigner-Ville Distribution and the Reassigned Smoothed Pseudo Wigner-Ville Distribution. Four-component frequency hopping low probability of intercept radar signals were analyzed. The following metrics were used for evaluation: percent error of: carrier frequency, modulation bandwidth, modulation period, and time-frequency localization. Also used were: percent detection, lowest signal-to-noise ratio for signal detection, and relative processing time.
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一种利用Wigner-Ville分布和重分配平滑伪Wigner-Ville分布检测和表征低概率截获跳频雷达信号的独特方法
拦截雷达信号的可能性低,这些信号很难被发现和表征,它们的目标是“看到但不被看到”。数字拦截接收机目前正在从基于傅里叶的技术转向分析低概率拦截雷达信号的经典时频技术。本文通过对Wigner-Ville分布和重分配平滑伪Wigner-Ville分布的比较,提出了一种独特的检测和表征低截获概率跳频雷达信号的方法。分析了截获雷达信号的四分量跳频低概率。以下指标用于评估:载波频率、调制带宽、调制周期和时频定位的误差百分比。还使用了:百分比检测,信号检测的最低信噪比和相对处理时间。
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