用于未来短程通信的宽带端射天线阵列

IF 2.1 Q3 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
Tushar Goel;Amalendu Patnaik
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引用次数: 0

摘要

提出了一种宽带、单向、相控阵。原型阵列的单个天线单元是宽带风车形天线。该天线的四个元件由功率分配器馈电,并配置在一个新颖的半圆形角相控阵中。通过优化阵列中四个天线元件之间的角路径差,引入了$\pi$/4的相位差。与传统的线性相控阵相比,通过引入角相控阵实现了21.5%的总尺寸减小。半径为65毫米的阵列在Rogers RO4232基板上进行了原型设计,工作频率范围为9.35–42.89 GHz。所提出的阵列配置可以在整个工作频率范围内保持8.54dB的平均增益和69.71%的平均辐射效率,同时表现出11.86dB的峰值增益。所提出的阵列在端射方向上表现出高度定向性,3dB角波束宽度在15.1°至76.7°之间。据作者所知,文献中尚未报道任何可在亚毫米波范围内提供如此大阻抗带宽的可比技术。所提出的阵列可以应用于未来的室内和室外短距离通信网络。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wideband Endfire Antenna Array for Future Short-Range Communications
A broadband, unidirectional, phased array is proposed. Single antenna element of the prototyped array is a broadband windmill-like shaped antenna. Four elements of this antenna are fed by a power divider and are configured in a novel semicircular-shaped, angular-phased array. A phase difference of $\pi $ /4 was introduced by optimizing the angular path difference among four antenna elements in the array. Total 21.5% of size reduction is achieved by introducing angular-phased array in comparison with the conventional linear-phased array. The array of radius 65 mm is prototyped on the Rogers RO4232 substrate for the operating frequency range 9.35–42.89 GHz. The proposed array configuration can maintain an average gain of 8.54 dB and average radiation efficiency of 69.71% in the entire operating frequency range while exhibiting a peak gain of 11.86 dB. The presented array exhibits highly directional behavior in the endfire direction, with the 3-dB angular beamwidth in the range from 15.1° to 76.7°. To the best of the authors’ knowledge, any comparable state-of-art has not been reported yet in the literature that could provide such a large impedance bandwidth in sub-mmWave range. The proposed array may find its applications for future indoor and outdoor short-range communication networks.
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来源期刊
CiteScore
3.70
自引率
0.00%
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