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Space-time matched filter design for interference suppression in coherent frequency diverse array

机译:相干频率各种阵列中干扰抑制的时空匹配滤波器设计

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By transmitting a single frequency-shifted waveform, coherent frequency diverse array (FDA) can provide a simple way to realize full spatial coverages with stable gains. Owing to the range-angle dependency in coherent FDA, the authors implement a two-dimensional angle-time matched filter to perform equivalent transmit beamforming and matched filtering simultaneously. However, such filter structures merely control main-lobes of equivalent transmit beams towards target directions. It fails to form nulls at interference directions. Moreover, traditional adaptive beamforming by designing adaptive weight vectors are no longer applicable. Additionally, they find that the range resolution scales linearly with the element number. To tackle these issues, a space-time matched filter (STMF) in combination with the hybrid coding technique is proposed. Aiming at mitigating interferences, the STMF is designed with a formulation of quadratically constrained quadratic programing. By relaxation of quadratic constraints, the hard non-convex problem can be turned into the second-order cone programing to obtain optimal filter parameters. Furthermore, the hybrid coding technique is devised to jointly improve the range resolution. Numerical experiments of both two-dimensional range-angle outputs and one-dimensional range profiles via filtering are provided, which demonstrate that the STMF with hybrid coding can effectively suppress sidelobe interferences with a range resolution enhancement.
机译:通过传输单个频移波形,相干频率各种阵列(FDA)可以提供一种简单的方法来实现具有稳定增益的完整空间覆盖。由于连贯的FDA中的范围角度依赖性,作者实现了二维角度匹配的滤波器,以同时执行等效的发送波束形成和匹配的滤波。然而,这种过滤器结构仅控制朝向目标方向的等效发射光束的主叶。它无法在干扰方向上形成空。此外,通过设计自适应权重向量的传统自适应波束形成不再适用。此外,他们发现范围分辨率与元素编号线性缩放。为了解决这些问题,提出了一种与混合编码技术结合的时空匹配过滤器(STMF)。旨在减轻干扰,STMF设计成具有二次约束的二次编程的制定。通过放松二次约束,可以将硬的非凸面问题变成二阶锥形编程以获得最佳滤波器参数。此外,设计混合编码技术以共同提高范围分辨率。提供了通过滤波的二维范围角输出和一维范围分布的数值实验,这证明了具有混合编码的STMF可以有效地抑制具有范围分辨率的增强的Sidelobe干扰。

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