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Range resolution improvement in passive coherent location radar systems using multiple FM radio channels

机译:使用多个FM无线电信道的无源相干定位雷达系统的距离分辨率提高

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摘要

Passive coherent location (PCL) radar systems that use single FM radio channel signal as illuminator of opportunity have limited range resolution due to low modulation bandwidth and high dependence on the content that is being broadcasted from the FM station. An improvement in range resolution is obtained by using multiple adjacent FM channels, emitted from co-sited transmitters, which is often the case in large towns in countries, where the FM channel allocations are relatively weakly regulated. The proposed scheme computes the autocorrelation function of the signal directly received from the FM co-located transmitter, and compares it to the cross-ambiguity function, obtained from direct and target scattered signals. The geometry of the problem is like in the case of monostatic radar. The range information is obtained by the delay between the cross-ambiguity function and the autocorrelation function. It is shown that down to -37dB signal to noise ratio (SNR) the autocorrelation function of 7 FM channels with different contents can be successfully extracted from the cross-ambiguity function. The detection of the time delays is a linear estimation problem. The issue of time-delay estimation is a known topic of research. A powerful estimator can be found. © The Institution of Engineering and Technology.
机译:使用单个FM无线电信道信号作为机会照明器的无源相干定位(PCL)雷达系统由于低调制带宽和对从FM电台广播的内容的高度依赖性而具有有限的距离分辨率。通过使用位于同一地点的发射机发射的多个相邻FM频道,可以提高距离分辨率,这在调频频道分配相对较弱的国家/地区的大城市中通常是这样。提出的方案计算直接从FM并置发射机接收到的信号的自相关函数,并将其与从直接和目标散射信号获得的交叉歧义函数进行比较。问题的几何形状类似于单基地雷达。通过交叉歧义函数和自相关函数之间的延迟来获得范围信息。结果表明,低至-37dB的信噪比(SNR),可以从交叉歧义函数中成功提取7个具有不同内容的FM通道的自相关函数。时间延迟的检测是线性估计问题。时延估计的问题是研究的已知主题。可以找到一个强大的估计器。 ©工程技术学会。

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  • 作者

    Tasdelen, A.S.; Koymen H.;

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 English
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