Cyclostationary and correlation based signal detection for harmonic radar systems

Radomir Pavlik, Z. Hrubos
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引用次数: 4

Abstract

In recent times, a significant interest in detection of nonlinear scatterers in various applications has appeared. One of these applications is detection of passive objects of artificial origin containing electronic circuits or other non-explosive elements incorporated into the firing train of hidden explosive hazards means. Prior research has shown that a single frequency RF signal is well suited to the task of illuminating such scatterers to excite their nonlinear response and commercially available devices based on this principle have appeared since the 1970s. However, this basic approach without any carrier modulation may limit efficiency of energy transmission to the nonlinear scatterer. Therefore, investigation of appropriate modulation schemes can reveal their potential benefits in harmonic radar detection systems. This paper presents an initial concept of novel detection method using binary phase-shift keying (BPSK) modulated signal for simultaneous detection of nonlinear scatterers with both quadratic and cubic characteristics. The use of BPSK signal brings interesting benefits to the fundamental detection of components at multiples of the carrier frequency and, at the same time, allows achieving significant reduction of transmit signal power at the carrier frequency. The proposed algorithms use cyclostationary features of linear digital modulations along with correlation based processing in some parts and are implemented using MATLAB.
谐波雷达系统中基于周期平稳和相关的信号检测
近年来,在各种应用中出现了对非线性散射体检测的极大兴趣。其中一个应用是检测含有电子电路或其他非爆炸性元件的人造被动物体,这些元件被纳入隐藏爆炸危险装置的发射序列。先前的研究表明,单频射频信号非常适合于照亮这些散射体以激发其非线性响应的任务,自20世纪70年代以来,基于这一原理的商用设备已经出现。然而,这种没有任何载波调制的基本方法可能会限制能量传输到非线性散射体的效率。因此,研究合适的调制方案可以揭示它们在谐波雷达探测系统中的潜在优势。本文提出了一种利用二相移键控(BPSK)调制信号同时检测具有二次和三次特征的非线性散射体的新方法的初步概念。BPSK信号的使用为载波频率倍数的基本检测带来了有趣的好处,同时,允许在载波频率上显著降低发射信号功率。该算法利用线性数字调制的周期平稳特性,并在某些部分进行了基于相关的处理,并使用MATLAB实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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