刘越,杨汶汶,陈建新. 一种小型化5G双频段四分之一模基片集成波导天线[J]. 电波科学学报,xxxx,x(x): x-xx. DOI: 10.12265/j.cjors.2023353
      引用本文: 刘越,杨汶汶,陈建新. 一种小型化5G双频段四分之一模基片集成波导天线[J]. 电波科学学报,xxxx,x(x): x-xx. DOI: 10.12265/j.cjors.2023353
      LIU Y, YANG W W, CHEN J X. A miniaturized 5G dual band quarter mode substrate integrated waveguide antenna[J]. Chinese journal of radio science,xxxx,x(x): x-xx. (in Chinese). DOI: 10.12265/j.cjors.2023353
      Citation: LIU Y, YANG W W, CHEN J X. A miniaturized 5G dual band quarter mode substrate integrated waveguide antenna[J]. Chinese journal of radio science,xxxx,x(x): x-xx. (in Chinese). DOI: 10.12265/j.cjors.2023353

      一种小型化5G双频段四分之一模基片集成波导天线

      A miniaturized 5G dual band quarter mode substrate integrated waveguide antenna

      • 摘要: 近年来,我国在5G Sub-6 GHz应用中引入了N78和N79频段,使能够覆盖这两个频段的5G双频段天线迅速成为当前的研究热点,然而目前的研究中少有能兼顾小尺寸和N78、N79双频双宽带覆盖的设计。基于此,本文提出了一种面向终端应用的具有小平面尺寸的四分之一模基片集成波导(Quarter mode substrate integrated waveguide, QMSIW)的双频段天线。基于SIW技术,本文首先构建了一种具有小型化优势的QMSIW天线,利用它的前两种模式(TE101模式、TE301模式)来形成两个频带,然后通过磁耦合引入寄生贴片,利用寄生贴片的前两种模式(TE101模式、TE301模式)来拓展两个频带的带宽。仿真结果表明本天线在三维尺寸为21 mm×25 mm×1.6 mm(0.25λ0×0.30λ0×0.019λ0) (λ0为中心频率处的空气中波长)的条件下最终实现了N78(3.4~3.6 GHz)和N79(4.8~5.0 GHz)的双频段覆盖。实物测试结果表明本天线可分别获得位于N78频段5.8%(3.35~3.55 GHz)和N79频段5%(4.69~4.93 GHz)的−6 dB阻抗带宽。在低频段和高频段的平均效率分别为−1.6 dB和−1.8 dB。

         

        Abstract: In recent years, China has introduced the N78 and N79 frequency bands in 5G Sub-6GHz applications, making 5G dual band antennas that can cover these two frequency bands quickly become a current research hotspot. However, there are few papers proposed that can balance small size and N78 and N79 dual band broadband coverage. Based on this background, this paper proposes a design with small plane size for terminal applications. A new method of low-profile quarter mode substrate integrated waveguide (QMSIW) dual frequency antenna. This antenna is based on the substrate integrated waveguide (SIW) technology. First, a quarter mode substrate integrated waveguide antenna with the advantage of miniaturization is constructed. Its first two modes (TE101 mode and TE301 mode) are used to form two bands, and then parasitic patches are introduced through magnetic coupling. The first two modes of parasitic patches (TE101 mode and TE301 mode) are used to expand the bandwidth of the two bands. The simulation results show that the three-dimensional size of this antenna is 21 mm×25 mm×1.6 mm (0.25λ0×0.30λ0×0.019λ0) (λ0 is the wavelength in the air at the center frequency) the dual band coverage of N78 (3.4-3.6 GHz) and N79 (4.8-5.0 GHz) is ultimately achieved. The physical test results show that this antenna can obtain -6dB impedance bandwidth located in the N78 frequency band 5.8% (3.35 GHz-3.55 GHz) and N79 frequency band 5% (4.69-4.93 GHz), respectively. The average efficiency in the low and high frequency bands is −1.6 dB and −1.8 dB, respectively.

         

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