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首页> 外文期刊>International Journal of Electrical and Computer Engineering >Dielectric Resonator Reflectarray Antenna Unit Cells for 5G Applications
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Dielectric Resonator Reflectarray Antenna Unit Cells for 5G Applications

机译:适用于5G应用的介电谐振器Reflectarray天线单元

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摘要

This paper presents an investigation for the performance comparison of three different unit cell configurations operating at 26 GHz for 5G applications. The unit cells are cross shape dielectric resonator, cross microstrip patch and cross hybrid dielectric resonator. Verification of the comparison has been done by simulations using commercial Computer Simulation Technology Microwave Studio (CST MWS). The simulated results for reflection phase, slope variation, reflection loss and 10% bandwidth were analyzed and compared. The results indicate that the optimum configuration to be deployed for the reflectarray’s unit element in order to fulfill the 5G requirements of a wide bandwidth is the cross hybrid DRA. This configuration is a combination of cross DRA with cross microstrip patch as the parasitic element in order to tune the phase and provide a wide phase range with smooth variation slope. Cross hybrid DRA provided a wide phase range of 520° with 0.77 dB loss and 10% bandwidth of 160 MHz.
机译:本文针对5G应用中以26 GHz运行的三种不同单位电池配置的性能比较进行了研究。单位单元是十字形介质谐振器,十字微带贴片和十字混合介质谐振器。通过使用商用计算机仿真技术Microwave Studio(CST MWS)进行的仿真来完成对比较的验证。分析并比较了反射相位,斜率变化,反射损耗和10%带宽的仿真结果。结果表明,为了满足宽带宽的5G要求,为反射阵列的单元元素部署的最佳配置是交叉混合DRA。这种配置是将交叉DRA与交叉微带贴片作为寄生元件的组合,以便调整相位并提供具有平滑变化斜率的宽相位范围。交叉混合DRA提供了520°的宽相位范围,0.77 dB的损耗和160 MHz的10%带宽。

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