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首页> 外文期刊>IEEE Antennas and Wireless Propagation Letters >Optimum Design of a Beam-Forming Array of S-Shaped DRA Elements With a Superstrate on an SIW Feed for 5G Mobile Systems
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Optimum Design of a Beam-Forming Array of S-Shaped DRA Elements With a Superstrate on an SIW Feed for 5G Mobile Systems

机译:用于5G移动系统的SIW馈源上具有S形DRA元件的波束成形阵列的优化设计

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摘要

In this letter, an array of dielectric resonator antennas (DRAs) is proposed for the fifth-generation mobile network. A novel S-shaped DRA is presented as array elements. The proposed configuration is achieved by making two symmetrical segments on a conventional rectangular DRA. The results show that in this configuration the higher ordermodes of antenna are excited, and therefore, the 3 dB gain bandwidth and impedance bandwidth of antenna are increased. The volume of the proposedDRAwithout ground plane is 0.38.3 lambda(3)(g). The proposed DRA provides maximum bandwidth and gain per unit volume compared to similar designs in the literature. Furthermore, the benefit of a mutual coupling (MC) compensation approach in a linear DRA array is investigated. The results show that the accuracy of a computed MC matrix is better at the resonance frequency relative to other frequencies. Also, the performance of a beam-forming algorithm is improved by using this matrix for compensating theMCeffects. The proposed array is fabricated and its characteristics are measured. A very good agreement between the numerical and measured results is obtained.
机译:在这封信中,提出了用于第五代移动网络的电介质谐振器天线(DRA)阵列。提出了一种新颖的S形DRA作为阵列元素。通过在常规矩形DRA上制作两个对称段来实现建议的配置。结果表明,在这种配置下,天线的高阶模态被激发,因此,天线的3 dB增益带宽和阻抗带宽增加。建议的不带接地层的DRA的体积为0.38.3 lambda(3)(g)。与文献中的类似设计相比,建议的DRA提供最大的带宽和每单位体积的增益。此外,研究了线性DRA阵列中互耦(MC)补偿方法的优势。结果表明,相对于其他频率,在共振频率下计算出的MC矩阵的精度更高。而且,通过使用该矩阵补偿MC效应,改善了波束形成算法的性能。所提出的阵列被制造并测量其特性。在数值结果和测量结果之间获得了很好的一致性。

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