Development of a Broadband and High-Gain Circularly Polarized Array of Multilayer Slot Antennas for X-Band Wireless Communication Networks

IF 0.9 4区 工程技术 Q4 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS International Journal of RF and Microwave Computer-Aided Engineering Pub Date : 2023-10-12 DOI:10.1155/2023/8701539
Hosein Saghafi, Robab Kazemi, Hamed Hamlbar Gerami
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Abstract

This paper presents a wideband cavity-backed slot antenna array designed for X-band wireless communication systems. The antenna element consists of a circular slot combined with a cross-slotted patch; both are fed by an L-shaped microstrip line through proximity coupling to extend the impedance bandwidth and gain. The reduction of beam squint in the radiation patterns, caused by the asymmetric feed line, is achieved through intelligent optimization of the dimensions and position of the cross slot on the patch. Additionally, a back cavity is included to provide unidirectional radiation and enhance gain. The antenna exhibits right-hand circularly polarized (RHCP) radiation patterns with high gain over a wideband frequency range. To further improve the axial ratio (AR) bandwidth and gain, the antenna is utilized in a 2 × 2 array configuration with a sequential rotation feed network. The overall dimensions of the proposed array are 1.42 λ 0 × 1.42 λ 0 × 0.45 λ 0 , where λ 0 represents the wavelength at the center frequency of 10 GHz. The fabricated array is then tested, and the measurements show an impedance bandwidth of 60% (7 GHz-13 GHz) with S 11 < 10 dB, a 3 dB AR bandwidth of 42% (7.45-11.65 GHz), and a peak gain of 11.14 dB. The simulated and measured results exhibit good agreement, validating the effectiveness of the design.
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用于x波段无线通信网络的宽带高增益多层槽天线圆极化阵列的研制
本文设计了一种用于x波段无线通信系统的宽带空腔槽天线阵列。天线元件包括与交叉槽贴片组合的圆形槽;两者都由l型微带线通过接近耦合馈电,以延长阻抗带宽和增益。通过对贴片上交叉槽的尺寸和位置进行智能优化,减少了由于馈线不对称引起的辐射图中的光束斜视。此外,后腔包括提供单向辐射和提高增益。该天线在宽带频率范围内具有高增益的右圆极化(RHCP)辐射模式。为了进一步提高轴向比(AR)带宽和增益,该天线采用2 × 2阵列配置和顺序旋转馈电网络。该阵列的整体尺寸为1.42 λ 0 × 1.42 λ 0 × 0.45 λ 0,其中λ 0表示中心频率为10 GHz的波长。然后对制作的阵列进行了测试,测量结果表明,在s11 <下,阻抗带宽为60% (7 GHz-13 GHz);−10db, 3db AR带宽为42% (7.45-11.65 GHz),峰值增益为11.14 dB。仿真结果与实测结果吻合良好,验证了设计的有效性。
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来源期刊
CiteScore
4.00
自引率
23.50%
发文量
489
审稿时长
3 months
期刊介绍: International Journal of RF and Microwave Computer-Aided Engineering provides a common forum for the dissemination of research and development results in the areas of computer-aided design and engineering of RF, microwave, and millimeter-wave components, circuits, subsystems, and antennas. The journal is intended to be a single source of valuable information for all engineers and technicians, RF/microwave/mm-wave CAD tool vendors, researchers in industry, government and academia, professors and students, and systems engineers involved in RF/microwave/mm-wave technology. Multidisciplinary in scope, the journal publishes peer-reviewed articles and short papers on topics that include, but are not limited to. . . -Computer-Aided Modeling -Computer-Aided Analysis -Computer-Aided Optimization -Software and Manufacturing Techniques -Computer-Aided Measurements -Measurements Interfaced with CAD Systems In addition, the scope of the journal includes features such as software reviews, RF/microwave/mm-wave CAD related news, including brief reviews of CAD papers published elsewhere and a "Letters to the Editor" section.
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