Weak Target Detection in MIMO Radar via Beamspace Canonical Correlation

M. S. Ibrahim, N. Sidiropoulos
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引用次数: 3

Abstract

Reliable detection and accurate estimation of weak targets and their Doppler frequencies is a challenging problem in MIMO radar systems. Reflections from such targets are often overpowered by those from stronger nearby targets and clutter. Considering a 3-D data model where the coherent processing interval comprises multiple pulses, a novel weak target detection and estimation approach is proposed in this paper. The proposed method is based on creating partially overlapping spatial beams, and performing canonical correlation analysis (CCA) in the resulting beamspace. It is shown that if a target is present in the overlap sector, then its Doppler profile can be reliably estimated via beamspace CCA, even if hidden under much stronger interference from nearby targets and clutter. Numerical results are included to validate this theoretical claim, demonstrating that the proposed Beamspace Canonical Correlation (BCC) method yields considerable performance improvement over existing approaches.
基于波束空间典型相关的MIMO雷达弱目标检测
弱目标及其多普勒频率的可靠检测和准确估计是MIMO雷达系统中一个具有挑战性的问题。来自这些目标的反射通常被来自附近更强的目标和杂波的反射所压制。针对相干处理间隔由多个脉冲组成的三维数据模型,提出了一种新的弱目标检测与估计方法。该方法基于创建部分重叠的空间波束,并在产生的波束空间中进行典型相关分析(CCA)。结果表明,如果目标存在于重叠扇区,那么即使隐藏在附近目标和杂波的更强干扰下,也可以通过波束空间CCA可靠地估计其多普勒轮廓。数值结果验证了这一理论主张,表明所提出的波束空间典型相关(BCC)方法比现有方法具有相当大的性能改进。
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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