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Two Target Detection Algorithms for Passive Multistatic Radar

机译:无源多基地雷达的两种目标检测算法

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摘要

This paper considers the problem of passive detection with a multistatic radar system involving a noncooperative illuminator of opportunity (IO) and multiple receive platforms. An unknown source signal is transmitted by the IO, which illuminates a target of interest. These receive platforms are geographically dispersed, and collect independent target echoes due to the illumination by the same IO. We consider a generalized canonical correlation (GCC) detector for passive detection which requires the knowledge of the noise power. We derive closed-form expressions for the probabilities of false alarm and detection of this detector. For the case where the noise power is unknown, we propose a generalized likelihood ratio test (GLRT) detector to deal with the passive detection problem. Moreover, a closed-form expression for the probability of false alarm of this GLRT detector is given, which shows that the proposed GLRT detector exhibits a constant false alarm rate property with respect to the noise power. Numerical simulations demonstrate that the proposed GLRT detector generally outperforms the generalized coherence detector, a previous popular passive detector that neither requires the knowledge of the noise power. In addition, the GLRT also outperforms the GCC detector when the latter has an uncertainty in its knowledge of the noise power.
机译:本文考虑了一个多静态雷达系统的被动检测问题,该系统涉及一个不合作的机会照明器(IO)和多个接收平台。 IO发送了未知的源信号,该信号照亮了目标。这些接收平台在地理位置上分散,并且由于相同IO的照明而收集独立的目标回波。我们考虑一种用于被动检测的通用规范相关(GCC)检测器,它需要了解噪声功率。我们导出错误警报和检测此检测器的概率的闭式表达式。对于噪声功率未知的情况,我们提出了一种通用似然比测试(GLRT)检测器来处理无源检测问题。此外,给出了该GLRT检测器误报概率的闭合形式,表明所提出的GLRT检测器相对于噪声功率具有恒定的误报率特性。数值模拟表明,所提出的GLRT检测器通常优于广义相干检测器,后者是一种既受欢迎的无源检测器,也不需要了解噪声功率。此外,当GCC检测器不确定其噪声功率的知识时,GLRT也优于GCC检测器。

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