Decoupling Evaluation of Compact Phased Array Radars

Mariana G. Pralon, Leandro Pralon, B. Pompeo, G. Beltrão, T. Pasetto, R. Thomä
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Abstract

In this paper, we investigate the effects of mutual coupling in phased array radars, and compare two techniques that ensure mitigation of the degrading effects that arise when the active elements are placed close together in the array. In this work, we aim compact arrays with inter-element spacing of less than half of the free-space wavelength. Since the phased array operates both in the transmitting, as well as in the receiving mode, it becomes necessary to analyze how the electromagnetic coupling affects the radiation pattern of the antenna elements for different scanning angles. The mismatch at each antenna port, as well as the distortion of the array radiation pattern will vary depending on how we feed the elements in the array. To overcome the effects of mutual coupling, we compare two techniques for decoupling: the use of metallic walls, and the use of decoupling and matching networks comprised of microstrip lines.
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紧凑型相控阵雷达的解耦评估
在本文中,我们研究了相控阵雷达中相互耦合的影响,并比较了两种确保减缓阵列中有源元件紧密放置时产生的退化效应的技术。在这项工作中,我们的目标是元件间间距小于自由空间波长一半的紧凑阵列。由于相控阵既工作在发射模式,也工作在接收模式,因此有必要分析电磁耦合对不同扫描角度下天线单元辐射方向图的影响。每个天线端口的不匹配以及阵列辐射方向图的失真将根据我们如何馈送阵列中的元素而变化。为了克服相互耦合的影响,我们比较了两种解耦技术:使用金属壁,以及使用由微带线组成的解耦和匹配网络。
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