基于轨道角动量的现代应用槽阵天线

Arkan Mousa Majeed, T. Elwi, Zaid A. Abdul Hassain, Jayendra Kumar, Ahmed E. Saleem
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引用次数: 0

摘要

毫米波是各种现代无线通信网络最有前途的波段。这是因为毫米波能够以更大的信道容量传输大量数据。然而,由于高频率高衰减系数的影响,毫米波的传播速度较低。因此,本研究提出了一种带有槽阵的三维结构天线设计,通过双端口馈电操作实现高增益,以应用于现代通信系统的轨道角动量。此外,所提天线带宽的改善使其成为第五代(5G)通信系统的理想候选天线。该天线取决于两个具有导电圆形截面积的同心结构。第一个结构的形状是一个带有圆柱形波导的三维锥体。第二个结构的形状是一个带有圆形孔径的圆盘。拟建天线的两部分同心,从侧面以 900 相位差向两个分立端口馈电。经测定,拟议的天线在 3GHz 至 30GHz 频段内具有 10dBi 至 20dBi 的超常增益。在导电锥下方引入导电环形反射器后,增益得到了提升。该天线在整个相关频段内的匹配阻抗低于-10dB。天线在 25GHz 和 26GHz 的 E 平面和 H 平面上的辐射特性得到了表征。最后,使用基于 CST studio 和 HFSS 算法的两个软件包对天线性能进行了验证。
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ORBITAL ANGULAR MOMENTUM-BASED SLOT ARRAY ANTENNA FOR MODERN APPLICATIONS
Millimeter waves are the most promising waves for different modern wireless communication networks. This is due to their ability to carry big data with enhanced channel capacity. However, mm-waves suffer from low propagation due to the effects of high attenuation factors with high frequencies. Therefore, in this work, a three-dimensional structural antenna design with a slot array is proposed to achieve high gain through a two-port feeding operation for orbital angular momentum applications of modern communication systems. Also, the improved bandwidth of the proposed antenna makes it an excellent candidate for fifth-generation (5G) communications systems. The antenna depends on two concentric structures with conductive circular cross-sectional area. The first structure is shaped as a three-dimensional cone with a cylindrical waveguide. The second structure is shaped as a circular disc with a circular aperture. The two parts of the proposed antenna are concentered to be fed with two discrete ports from the side with a 900phase difference. It is determined that the proposed antenna offers an exceptional gain to vary from 10dBi to 20dBi within the frequency band from 3GHz to 30GHz. It is realized that such enhancement after introducing a conductive circular reflector underneath the conductive cone. The antenna shows a matching impedance below -10dB over the entire frequency band of interest. The antenna radiation proprietors at 25GHz and 26GHz at the E-plane and H-plane are characterized. Finally, the antenna performance is validated using two software packages based on CST studio and HFSS algorithms.
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CiteScore
0.70
自引率
0.00%
发文量
74
审稿时长
50 weeks
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