首页> 外文会议>International Workshop on Antenna Technology >Novel Integrated Design of Dual-Band Dual-Polarization mm-Wave Antennas in Non-mm-Wave Antennas (AiA) for a 5G Phone with a Metal Frame
【24h】

Novel Integrated Design of Dual-Band Dual-Polarization mm-Wave Antennas in Non-mm-Wave Antennas (AiA) for a 5G Phone with a Metal Frame

机译:具有金属框架的5G手机的非毫米波天线(AiA)中的双频双极化毫米波天线的新型集成设计

获取原文

摘要

A novel integrated design of dual-band dual-polarization millimeter-wave (mm-Wave) antennas in a non-mm-Wave antenna (AiA) for a cellular phone with a metal frame and a high screen-to-body ratio over 91.5% for the fifth generation mobile communications (5G) is presented to achieve high compatibility with metal-exterior designs, good conformal ability to challenging product shapes, and compact space for the mmWave and non-mm-Wave antennas. The mm-Wave antennas based on 5 dual-band dual-polarization stacked patch antennas form a linear antenna array embedded in the metal frame which serves as a long-term evolution (LTE) antenna. From simulations, in terms of input reflection coefficients |Snn| ≥ -10 dB, the bandwidths of the vertical ports (V-ports) in the 5G mmWave antenna array for the vertical polarization (V-pol.) range from 27.44 GHz to 28.56 GHz and from 36.92 GHz to 40.22 GHz; similarly, the bandwidths of the horizontal ports (H-ports) in the 5G mm-Wave antenna array for the horizontal polarization (H-pol.) range from 27.32 GHz to 28.56 GHz and from 36.96 GHz to 40.34 GHz, respectively. Thus, the two popular 5G mm-Wave bands of n261 and n260 in the third generation partnership project (3GPP) can be covered. Besides, for the low band (band n261) and high band (band n260), the maximum (max.) peak realized gains of the V-pol. in the plane of theta = 90° are 11.49 dBi and 13.27 dBi, and the max. scanning angles are both 45°, respectively. Similarly, the max. peak realized gains of the H-pol. in the plane of theta = 90° in the low band and high band are 11.35 dBi and 12.18 dBi, and the max. scanning angles are 60° and 30°, respectively. The bandwidths of| Snn| ≤ -6 dB for the LTE antenna can cover from 872 MHz to 962 MHz and from 2265 to 2740 MHz so that LTE Band 8, Band 40, and Band 41 can be accommodated with antenna efficiencies higher than -3.43 dB in the low band (Band 8) and higher than -1.72 dB in the high band (Band 40 and Band 41). Also, the mm-Wave antenna array can attain right-hand and left-hand circular polarizations.
机译:具有金属框架和91.5以上的高屏占比的手机的非毫米波天线(AiA)中的双波段双极化毫米波(mm-Wave)天线的新颖集成设计提出了用于第五代移动通信(5G)的%,以实现与外部金属设计的高度兼容性,对具有挑战性的产品形状具有良好的保形能力,以及mmWave和非mmWave天线的紧凑空间。基于5个双波段双极化堆叠式贴片天线的毫米波天线形成了嵌入金属框架中的线性天线阵列,该阵列用作长期演进(LTE)天线。根据模拟,根据输入反射系数| Snn | ≥-10 dB,5G mmWave天线阵列中垂直极化(V-pol。)的垂直端口(V端口)的带宽范围为27.44 GHz至28.56 GHz和36.92 GHz至40.22 GHz;类似地,5G毫米波天线阵列中用于水平极化(H-pol。)的水平端口(H端口)的带宽分别为27.32 GHz至28.56 GHz和36.96 GHz至40.34 GHz。因此,可以覆盖第三代合作伙伴计划(3GPP)中的两个流行的5261 mm-Wave波段n261和n260。另外,对于低频带(n261频带)和高频带(n260频带),最大(最大)峰值实现了V-pol的增益。在θ= 90°的平面上,最大为11.49 dBi和13.27 dBi。扫描角均为45°。同样,最高H-pol的峰值实现增益。在theta = 90°平面中,低频带和高频带中的频率分别为11.35 dBi和12.18 dBi,最大扫描角度分别为60°和30°。的带宽| Snn | LTE天线的≤-6 dB可以覆盖872 MHz至962 MHz和2265至2740 MHz,因此LTE频段8,频段40和频段41可以在低频段内以高于-3.43 dB的天线效率进行调节(频段8)和高频段(频段40和频段41)高于-1.72 dB。同样,毫米波天线阵列可以实现右旋和左旋圆极化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号