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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >Sum and difference beamforming for angle-doppler estimation with STAP-based radars
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Sum and difference beamforming for angle-doppler estimation with STAP-based radars

机译:基于STAP的雷达用于角度多普勒估计的求和与差波束成形

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摘要

The angle and Doppler estimation performance of the traditional space-time adaptive processing (STAP) method usually degrades in terms of estimation accuracy, especially for slowly moving targets. In this paper, a novel sum and difference beamforming approach with STAP-based radar is proposed, where multiple constraints, including the magnitude and phase constraints, derivative constraints, and zero-point constraints, are incorporated. Since the derivative constraints are independent of the array geometry, the proposed sum and difference beamforming method is applicable for both symmetric and asymmetric arrays. Also, the coupling relationship between angle and Doppler estimates is resolved by properly modifying the zero-point constraints. Moreover, the proposed method is robust against the coherent jamming contamination. Numerical examples indicate that the proposed method offers a significant performance improvement in angle and Doppler parameters estimation.
机译:传统时空自适应处理(STAP)方法的角度和多普勒估计性能通常会在估计精度方面下降,尤其是对于缓慢移动的目标。本文提出了一种新颖的基于STAP的雷达求和与差波束成形方法,其中并入了包括大小和相位约束,导数约束和零点约束在内的多个约束。由于导数约束与阵列几何形状无关,因此所提出的求和和差波束成形方法适用于对称和非对称阵列。而且,通过适当修改零点约束可以解决角度和多普勒估计之间的耦合关系。而且,所提出的方法对于相干的干扰污染是鲁棒的。数值算例表明,所提出的方法在角度和多普勒参数估计方面提供了显着的性能改进。

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