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首页> 外文期刊>IEEE Transactions on Signal Processing >A Unifying Approach for Disturbance Cancellation and Target Detection in Passive Radar Using OFDM
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A Unifying Approach for Disturbance Cancellation and Target Detection in Passive Radar Using OFDM

机译:OFDM无源雷达干扰消除与目标检测的统一方法

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摘要

This paper addresses the problem of mobile target detection in multipath scenarios with a passive radar using DVB-T transmitters of opportunity. For such emissions, it has been shown the interest in implementing “mismatched” correlators, reducing both the zero Doppler contribution (ZDC) masking effects and the false alarm rate. A very efficient mismatched reference signal is obtained with the reciprocal filter (or inverse filter) which consists in a modulus frequential equalization of the transmitted signal. We propose here to revisit the reciprocal filter-based correlator and to reinterpret it as a so-called Doppler channel detector (CHAD). This new interpretation allows a direct rejection of the ZDC, unifying in one and the same step the main disturbance mitigation and the detector construction. We provide a statistical theoretical study of the performance and a comparison with the matched correlator, i.e., the classical cross-ambiguity function (CAF). We demonstrate that CHAD has a random pedestal (a clutter floor level) significantly lower than that of the classical CAF for low Doppler frequency shifts. Numerical experiments on simulated and real data as well validate the mathematical derivations.
机译:本文讨论了使用机会DVB-T发射机的无源雷达在多径场景中进行移动目标检测的问题。对于这样的发射,已经显示出有兴趣实现“不匹配”的相关器,从而减少零多普勒贡献(ZDC)的屏蔽效应和误报率。通过倒数滤波器(或逆滤波器)可以获得非常有效的失配参考信号,该倒数滤波器包含发射信号的模数频繁均衡。我们在这里提出重新审视基于互逆滤波器的相关器,并将其重新解释为所谓的多普勒信道检测器(CHAD)。这种新的解释允许直接拒绝ZDC,从而在同一步骤中统一主要的干扰缓解和检测器构造。我们提供了性能的统计理论研究,并与匹配的相关器(即经典的交叉歧义函数(CAF))进行了比较。我们证明,对于低多普勒频移,CHAD的随机基座(杂波层水平)明显低于经典CAF。在模拟和真实数据上进行的数值实验也验证了数学推导。

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