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Omnidirectional Beamforming Based on Complete Complementary Codes for Uniform Rectangular Array

机译:基于完整互补码的全向波束成形均匀矩形阵列

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In a cellular system, the base station needs to broadcast the common signals cell-wide. In this paper, we study how a multiple-input multiple-output (MIMO) system can achieve omnidirectional beamforming to maximize the coverage for common signals. We consider a uniform rectangular array (URA) configuration, since for a massive MIMO a URA would be easier to deploy than uniform linear array (ULA). We construct a rank-P beamformer based on the complete complementary codes (CCCs) for a general P × Q (P ≤ Q) URA. We prove that such CCCs-based scheme can obtain P beamforming vectors to generate a perfectly omnidirectional radiation beampattern. Combined with the space-time block coding (STBC), our design can provide optimum coverage for the common messages.
机译:在蜂窝系统中,基站需要广播宽的公共信号。在本文中,我们研究多输入多输出(MIMO)系统如何实现全向波束成形,以最大化常见信号的覆盖范围。我们考虑统一的矩形阵列(URA)配置,因为对于大规模的MIMO,URA将更容易地部署而不是均匀的线性阵列(ULA)。基于一般P×Q(P≤Q)URA的完整互补代码(CCC),构建秩-P波束形成器。我们证明,这种基于CCC的方案可以获得P波束形成向量,以产生完全全向辐射辐射射线图案。结合空时块编码(STBC),我们的设计可以为公共消息提供最佳覆盖范围。

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