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Optimal polarimetric detection of radar target in a slowly fluctuating environment of clutter

机译:杂波缓慢变化环境下雷达目标的最优极化检测

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摘要

It is shown that in a situation where a radar target is distant enough from the radar and is included in a natural or artificial clutter environment in such a manner that the conventional detection methods fail, it is possible to improve the radar detection performance by using appropriate signal processing on two orthogonal polarization states. A CFAR (constant false alarm rate) polarimetric detection system based on the study of the polarization difference between clutter and target is proposed. Since the polarization state of the clutter echoes fluctuates slowly from cell to cell, an autoregressive model can be applied to the components of the polarization vector to predict the detection thresholds needed to follow the polarization state variation. The detection thresholds are determined to maintain a false alarm probability equal to 10/sup -6/. The presence of a target registers as a significant variation of the estimation error of the polarization vector. Results obtained from measurements of simple and canonical targets with artificial clutter are presented, and these results validate the principle of polarimetric detection.
机译:结果表明,在雷达目标离雷达足够远并以自然或人工杂波环境包含在常规检测方法失败的情况下,可以通过使用适当的方法来提高雷达的检测性能。两个正交极化状态的信号处理。提出了一种基于杂波与目标极化差研究的恒虚警率极化检测系统。由于杂波回波的极化状态在每个单元之间缓慢波动,因此可以将自回归模型应用于极化向量的分量,以预测跟随极化状态变化所需的检测阈值。确定检测阈值以维持等于10 / sup -6 /的错误警报概率。目标的存在记录了极化矢量估计误差的显着变化。给出了用人工杂波测量简单和经典目标所获得的结果,这些结果验证了偏振检测的原理。

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