多相编码雷达信号时间参数估计的各种瞬时功率方法的比较

A. A. Ahmad, M. Ajiya, Lawal Mohammed Bello, Zainab Yunusa Yusuf
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摘要

作为电子战的一部分,电子情报(ELINT)装置的关键特征是雷达信号的拦截和分析。本文作为ELINT的一部分,提出了一种非合作环境下低截获概率(LPI)多相脉冲雷达信号的时间参数估计算法,以识别其其他特征。采用了基于瞬时功率的三种不同的方法。前两种方法是利用时频分布(TFD)的时间方面近似得到的,而第三种方法是利用其共轭形式的传统方法。本文主要使用的TFD是可分离核的Wigner-Ville分布(WVD),并给出了其简单的启发式方法。在此基础上,提出了一种基于测量时谱宽度的算法,确定了雷达信号的两个基本时间参数;脉冲宽度(PW)或脉冲重复周期(PRP)。在存在高斯性质的伪随机数建模的噪声的情况下,在不同的信噪比(SNRs)下测试了所开发算法的质量。结果表明,当阈值固定为37.5%时,从TFD获得的瞬时功率在最小信噪比为−15 dB时表现最佳。如果在最小信噪比为- 11 dB的情况下应用可变阈值,则在瞬间获得功率的传统方法表现非常好。结果表明,该方法可应用于实际的电子情报领域,用于雷达信号的分析
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of Various Instantaneous Power Methods for the Estimation of Time-Parameters of Poly Phase Coded Radar Signal
Key feature of the electronic intelligence (ELINT) setup as part of the electronic warfare is the interception and analysis of radar signals. This paper as part of ELINT provides a time parameter estimation algorithm associated with poly-phase pulsed radar signal of low probability of intercept (LPI) in a non-cooperative environment in order to identify its other characteristics. Three different methods based on power obtained at instants of time are used. The first two are obtained from the time-aspect approximation of a time-frequency distribution (TFD) while the third one is the traditional method of using its conjugate form. The main TFD used in this paper is Wigner-Ville distribution (WVD) of separable kernel and its brief heuristic approach was presented. Thereafter, an algorithm based on measuring the time-spectrum width is developed so as to determine two basic time parameter of the radar signal; either the pulse width (PW) or the pulse repetition period (PRP). The quality of the algorithm developed is tested at various signal-to-noise ratios (SNRs) in the presence of noise modeled by pseudorandom numbers of Gaussian nature. The Result obtained shows that for a fixed threshold of 37.5%, power at instants of time obtained from the TFD performs best at minimum SNR of −15 dB. The traditional method of getting power at instants of time performs very well if a variable threshold is applied at minimum SNR of −11 dB. The results shows that the proposed methods may be deployed in the practical ELINT field for analysis of radar signal
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