首页> 外文会议>IEEE 5G World Forum >Receive Diversity Options for Single Panel 4G-5G Antennas
【24h】

Receive Diversity Options for Single Panel 4G-5G Antennas

机译:接收单面板4G-5G天线的分集选项

获取原文

摘要

Using a single rectangular antenna panel enhances cellular capacity via vertical beamforming (e.g. “Full Dimension MIMO”) but may impact diversity gain. We compare the receive diversity performance of several single-panel signal processing techniques, including: subarrays (with wide or narrow beamwidths), pattern diversity (with various a priori azimuth offset beam steering), and Maximum Ratio Combining. Spatial fading correlation is obtained from the 3GPP TR 25.996 model. We assume a hybrid analog-digital beamformer and derive the SNR for any analog beamformer followed by an MRC digital stage. This allows us to apply various beamforming strategies to the antenna subarrays and determine if there is a benefit. In a simple azimuth-only, single user simulation we find:4R (i.e. 4 outputs) subarrays with narrow steered beams approaches the performance of 8RMRC, while a 4 dB shortfall is found for widebeam subarrays relative to MRC; and pattern diversity is competitive with widebeam subarrays for 4R but not 8R.
机译:使用单个矩形天线面板可通过垂直波束成形(例如“全尺寸MIMO”)增强蜂窝容量,但可能会影响分集增益。我们比较了几种单面板信号处理技术的接收分集性能,包括:子阵列(具有较宽或较窄的波束宽度),模式分集(具有各种先验方位角偏移波束控制)和最大比合并。空间衰落相关性是从3GPP TR 25.996模型获得的。我们假设使用混合模数波束形成器,并在其后跟随MRC数字级来推导任何模拟波束形成器的SNR。这使我们可以将各种波束成形策略应用于天线子阵列,并确定是否有好处。在一个简单的仅方位角的单用户模拟中,我们发现:具有窄转向波束的4R(即4个输出)子阵列接近8RMRC的性能,而相对于MRC,宽波束子阵列发现4 dB的不足;并且模式多样性与4R宽光束子阵列竞争,而8R则没有。

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