A Study on Characterization of Near-Field Sub-Regions for Phased-Array Antennas

IF 8.3 2区 计算机科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Communications Pub Date : 2024-10-17 DOI:10.1109/TCOMM.2024.3483046
Mehdi Monemi;Sirous Bahrami;Mehdi Rasti;Matti Latva-aho
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Abstract

We characterize three near-field sub-regions for phased array antennas by elaborating on the boundaries Fraunhofer, radial-focal, and non-radiating distances. The Fraunhofer distance which is the boundary between near and far field has been well studied in the literature on the principal axis (PA) of single-element center-fed antennas, where PA denotes the axis perpendicular to the antenna surface passing from the antenna center. The results are also valid for phased arrays if the PA coincides with the boresight, which is not commonly the case in practice. In this work, we completely characterize the Fraunhofer distance by considering various angles between the PA and the boresight. For the radial-focal distance, below which beamfocusing is feasible in the radial domain, a formal characterization of the corresponding region based on the general model of near-field channels (GNC) is missing in the literature. We investigate this and elaborate that the maximum-ratio-transmission (MRT) beamforming based on the simple uniform spherical wave (USW) channel model results in a radial gap between the achieved and the desired focal points. While the gap vanishes when the array size N becomes sufficiently large, we propose a practical algorithm to remove this gap in the non-asymptotic case when N is not very large. Finally, the non-radiating distance, below which the reactive power dominates active power, has been studied in the literature for single-element antennas. We analytically explore this for phased arrays and show how different excitation phases of the antenna array impact it. We also clarify some misconceptions about the non-radiating and Fresnel distances prevailing in the literature.
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相控阵天线近场子区域特性研究
我们通过阐述夫琅和费距离、径向焦距离和非辐射距离的边界来描述相控阵天线的三个近场子区域。作为近场和远场边界的弗劳恩霍夫距离在单单元中心馈电天线的主轴(PA)上得到了很好的研究,其中PA表示从天线中心穿过的垂直于天线表面的轴。结果也适用于相控阵,如果PA与轴向一致,这在实际中并不常见。在这项工作中,我们通过考虑PA和轴视之间的不同角度来完全表征弗劳恩霍夫距离。对于径向焦距,文献中缺乏基于一般近场通道模型(GNC)的相应区域的形式化表征,在此半径域下,波束可以在径向域中聚焦。我们对此进行了研究,并详细说明了基于简单均匀球面波(USW)信道模型的最大比传输(MRT)波束形成会导致实现的焦点与期望的焦点之间存在径向间隙。当数组大小N变得足够大时,间隙就会消失,我们提出了一种实用的算法来消除N不是很大的非渐近情况下的间隙。最后,文献研究了单单元天线的无功功率大于有功功率的非辐射距离。我们对相控阵进行了分析探讨,并展示了天线阵列的不同激励相位如何影响它。我们还澄清了文献中普遍存在的关于非辐射距离和菲涅耳距离的一些误解。
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来源期刊
IEEE Transactions on Communications
IEEE Transactions on Communications 工程技术-电信学
CiteScore
16.10
自引率
8.40%
发文量
528
审稿时长
4.1 months
期刊介绍: The IEEE Transactions on Communications is dedicated to publishing high-quality manuscripts that showcase advancements in the state-of-the-art of telecommunications. Our scope encompasses all aspects of telecommunications, including telephone, telegraphy, facsimile, and television, facilitated by electromagnetic propagation methods such as radio, wire, aerial, underground, coaxial, and submarine cables, as well as waveguides, communication satellites, and lasers. We cover telecommunications in various settings, including marine, aeronautical, space, and fixed station services, addressing topics such as repeaters, radio relaying, signal storage, regeneration, error detection and correction, multiplexing, carrier techniques, communication switching systems, data communications, and communication theory. Join us in advancing the field of telecommunications through groundbreaking research and innovation.
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