A simple way to achieve planar excitation of arc-shaped array feeds in two-dimensional beam-steerable spherical lens antenna

IF 3 3区 计算机科学 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Liangyu Sun, Binyun Yan, Weixing Sheng
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引用次数: 0

Abstract

In this article, a simple technique for achieving planar excitation positions of arc-shaped array feeds in a two-dimensional (2D) beam-steerable spherical lens antenna (SLA) is proposed. Specifically, a cuboid solder model is introduced to connect the feedlines of the feeds with the coaxial probe. An equivalent circuit model of the bowtie feed unit with solder is proposed to illustrate the impact of the introduced solder on the port matching. Additionally, the excitation position is altered by extending the microstrip feedline, which does not change the radiation structure of the feed nor affect its phase center. Subsequently, a homogeneous dielectric SLA with a 139-element bowtie-shaped dipole feed array is constructed to verify the planar excitation position scheme for the arc-shaped array feeds, which facilitates system integration. The theoretical calculation formulas for the beam pointing angles of numerous beams are also proposed. In the fabricated prototype, all feeds exhibit an overlapping bandwidth of 31–36.7 GHz for reflection coefficients, with the coupling less than -20 dB. The 139 switched beams cover a 2D continuous beam space of [33°, 33°], with adjacent beam crossover levels around -4 dB. The measured peak gain is 28.7 dBi at 34.5 GHz, with an aperture efficiency of 57%.
在二维波束稳定球透镜天线中实现弧形阵列馈电平面激励的简单方法
本文提出了一种在二维(2D)波束可转向球面透镜天线(SLA)中实现弧形阵列馈线平面激励位置的简单技术。具体来说,本文引入了一个立方体焊接模型来连接馈线与同轴探针。提出了带焊料的弓形馈电单元等效电路模型,以说明引入焊料对端口匹配的影响。此外,通过延长微带馈线来改变激励位置,这不会改变馈线的辐射结构,也不会影响其相位中心。随后,构建了一个带有 139 个元件的弓形偶极子馈电阵列的均质介质 SLA,以验证弧形阵列馈电的平面激励位置方案,从而方便了系统集成。此外,还提出了众多光束指向角的理论计算公式。在制作的原型中,所有馈电的反射系数都显示出 31-36.7 GHz 的重叠带宽,耦合小于 -20 dB。139 个切换波束覆盖[-33°, 33°]的二维连续波束空间,相邻波束交叉电平约为 -4 dB。在 34.5 GHz 时,测得的峰值增益为 28.7 dBi,孔径效率为 57%。
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来源期刊
CiteScore
6.90
自引率
18.80%
发文量
292
审稿时长
4.9 months
期刊介绍: AEÜ is an international scientific journal which publishes both original works and invited tutorials. The journal''s scope covers all aspects of theory and design of circuits, systems and devices for electronics, signal processing, and communication, including: signal and system theory, digital signal processing network theory and circuit design information theory, communication theory and techniques, modulation, source and channel coding switching theory and techniques, communication protocols optical communications microwave theory and techniques, radar, sonar antennas, wave propagation AEÜ publishes full papers and letters with very short turn around time but a high standard review process. Review cycles are typically finished within twelve weeks by application of modern electronic communication facilities.
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