王尚, 杜正伟. 一种用于手持移动终端的九频段双天线系统[J]. 电波科学学报, 2015, 30(5): 827-833. doi: 10.13443/j.cjors.2014100901
      引用本文: 王尚, 杜正伟. 一种用于手持移动终端的九频段双天线系统[J]. 电波科学学报, 2015, 30(5): 827-833. doi: 10.13443/j.cjors.2014100901
      WANG Shang, DU Zhengwei. A nona-band dual-antenna system for mobile handsets[J]. CHINESE JOURNAL OF RADIO SCIENCE, 2015, 30(5): 827-833. doi: 10.13443/j.cjors.2014100901
      Citation: WANG Shang, DU Zhengwei. A nona-band dual-antenna system for mobile handsets[J]. CHINESE JOURNAL OF RADIO SCIENCE, 2015, 30(5): 827-833. doi: 10.13443/j.cjors.2014100901

      一种用于手持移动终端的九频段双天线系统

      A nona-band dual-antenna system for mobile handsets

      • 摘要: 提出了一种应用于手持移动终端的九频段双天线系统.该双天线系统由两个对称的天线单元、一个解耦地枝和一个浮置结构组成.构成天线单元的驱动分枝和寄生地枝共同激励起多个谐振模式.通过采用解耦地枝, 降低了低频带内的互耦, 改善了高频带内的阻抗匹配.通过添加浮置结构, 增加了低频带和高频带的工作带宽, 降低了高频带下限频率附近的互耦.实测结果表明:天线样品在低频带和高频带内的-6 dB公共阻抗带宽分别为276 MHz (692~968 MHz)和1 110 MHz (1 636~2 746 MHz), 覆盖了LTE700/2300/2500, GSM850/900, DCS/PCS/UMTS和2.4-GHz WLAN频段; 低频带内的互耦低于-10 dB, 高频带内的互耦低于-13.7 dB.根据实测三维辐射方向图计算了双天线系统的包络相关系数、平均有效增益和分集增益计算结果表明, 双天线系统具有良好的分集性能.

         

        Abstract: A nona-band dual-antenna system for mobile handset applications is proposed. The dual-antenna system consists of two symmetric antenna elements, a decoupling ground branch and a floating structure. The antenna element incorporates a driven branch and a parasitic ground branch, generating a couple of resonant modes. A decoupling ground branch is adopted to reduce the mutual coupling in the lower band and improve the impedance matching in the higher band. To enhance the bandwidth of both the lower and higher bands and reduce the mutual coupling around the lower limit frequency of the higher band, a floating structure is added. The measured results show that the-6 dB common impedance bandwidth of the fabricated antenna prototype is 276 MHz (692~968 MHz) and 1 110 MHz (1 636~2 746 MHz), covering the LTE700/2300/2500, GSM850/900, DCS/PCS/UMTS and 2.4-GHz WLAN bands, with the mutual coupling lower than -10 dB and -13.7 dB in the lower and higher bands, respectively. Based on the measured three dimensional radiation patterns, the envelop correlation coefficient, the mean effective gain and the diversity gain are calculated. The calculated results show that a good diversity performance is achieved for the proposed dual-antenna system.

         

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