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Optimized Design of THz Microstrip Antenna Based-on Dual-Surfaced Multiple Split-Ring Resonators

机译:基于双裂缝多分体环谐振器的THz微带天线优化设计

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With the huge increasing need of wide-band wireless/mobile communication, the 5G or even further future generation systems based on millimeter-wave or even higher frequency band like terahertz (THz) waveband has been attracting more and more hot research on the related antenna design. In this paper, an optimized design of one kind of the THz microstrip antenna based on the dual-surfaced multiple split-ring resonators (DSMSRRs) is presented. Attached on both surfaces of the antenna substrate, each layer contains the same MSRRs connected with a feeding line correspondingly. The total two feeding lines are overlapped from the top view while the MSRRs structure on each surface is connected with each feeding line in an opposite direction from one to the other. The well performance of even current distribution on MSRRs of both surfaces can be achieved at the resonant frequency of around 300 GHz. Some numerical results are verified by the test ones of a fabricated antenna model according to the scaling effect.
机译:随着宽带无线/移动通信的需求越来越大,基于毫米波甚至更高频带的5G甚至进一步的未来一代系统,如太赫兹(THZ)波段一直吸引了对相关天线的越来越多的研究设计。本文提出了一种基于双浮出的多分裂环谐振器(DSMSRRS)的一种THZ微带天线的优化设计。附接在天线基板的两个表面上,每层包含相应地与馈线连接的相同的MSRRS。总两个馈线从俯视图重叠,同时每个表面上的MSRRS结构与从一个到另一个相反的方向与每个馈电线连接。甚至可以在两个表面的MSRR上分布均匀的井的性能,可以在约300GHz的谐振频率下实现。根据缩放效果,由制造的天线模型的测试元件验证了一些数值结果。

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