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Space-Time Block Coding with Beamforming for Triple-Polarized Uniform Linear Array Systems

机译:具有三极化均匀线性阵列系统的波束成形的空间 - 时间块编码

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摘要

Generally, space-time block coding (STBC) and beamforming (BF) gains cannot be obtained simultaneously because the former performs well under a low correlated MIMO channel, and the latter works efficiently in an environment with high correlation. However, array systems with antenna polarization have the potential to achieve gains with both techniques simultaneously because the cross-branch links in the system are usually uncorrelated. The cross-array links, on the other hand, can be highly correlated by setting the array element space equal to, or less than, a half-wavelength. This paper proposes a scheme to explore STBC and BF simultaneously via a triple-polarized uniform linear array (TPULA) system. The proposed scheme was verified based on the Long Term Evolution-Advanced (LTE-A) specification under a polarized MIMO (PMIMO) channel model, and therewith, the simulation results confirmed the validity of our proposed scheme.
机译:通常,由于前者在低相关的MIMO信道下执行良好,并且后者在具有高相关性的环境中有效地工作,因此不能同时获得空间块编码(STBC)和波束成形(BF)增益。然而,具有天线偏振的阵列系统具有同时通过两种技术实现增益,因为系统中的跨支链路通常不相关。另一方面,跨阵列链路可以通过设置等于或小于半波长的阵列元素空间来高度相关。本文提出了一种通过三极化均匀线性阵列(TPUAL)系统同时探索STBC和BF的方案。拟议的方案是根据极化MIMO(PMIMO)信道模型下的长期演进 - 先进(LTE-A)规范,从而验证了仿真结果证实了我们所提出的计划的有效性。

著录项

  • 作者

    Xin Su; Kyung Hi Chang;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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