论文标题

带有有限长度偶极子的超级指示阵列:建模和新观点

Superdirective Arrays with Finite-Length Dipoles: Modeling and New Perspectives

论文作者

Dovelos, Konstantinos, Assimonis, Stylianos D., Ngo, Hien Quoc, Matthaiou, Michail

论文摘要

致密的阵列可以促进将多个天线整合到有限体积中。除了紧凑的尺寸外,子波长的间距还可以用于终火操作的超目录,这一现象主要用于各向同性和无限辐射器。在这项工作中,我们专注于任意但有限长度的线性偶极子。具体而言,我们首先引入了一个阵列模型,该模型说明了非常薄的偶极子上正弦电流分布(SCD)。基于SCD,精确确定了每个偶极天线的损耗。利用衍生模型,我们接下来研究固定功率约束下的最大可实现率。最佳设计需要结合功率匹配,并最大程度地提高阵列增益。我们的理论分析是通过薄线近似以及全波模拟的矩矩的方法来证实的。数值结果表明,当偶极天线不太短和薄时,可以达到高辐射效率的超级增益。

Dense arrays can facilitate the integration of multiple antennas into finite volumes. In addition to the compact size, sub-wavelength spacing enables superdirectivity for endfire operation, a phenomenon that has been mainly studied for isotropic and infinitesimal radiators. In this work, we focus on linear dipoles of arbitrary yet finite length. Specifically, we first introduce an array model that accounts for the sinusoidal current distribution (SCD) on very thin dipoles. Based on the SCD, the loss resistance of each dipole antenna is precisely determined. Capitalizing on the derived model, we next investigate the maximum achievable rate under a fixed power constraint. The optimal design entails conjugate power matching along with maximizing the array gain. Our theoretical analysis is corroborated by the method of moments under the thin-wire approximation, as well as by full-wave simulations. Numerical results showcase that a super-gain is attainable with high radiation efficiency when the dipole antennas are not too short and thin.

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