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Non-Uniform Linear Antenna Array Design and Optimization for Millimeter-Wave Communications

机译:毫米波通信的非均匀线性天线阵列设计与优化

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In this paper, we investigate the optimization of non-uniform linear antenna arrays (NULAs) for millimeterwave (mmWave) line-of-sight (LoS) multiple-input multipleoutput (MIMO) channels. Our focus is on the maximization of the system effective multiplexing gain (EMG), by optimizing the individual antenna positions in the transmit/receive NULAs. Here, the EMG is defined as the number of signal streams that are practically supported by the channel at a finite signal-to-noise ratio. We first derive analytical expressions for the asymptotic channel eigenvalues with arbitrarily deployed NULAs when, asymptotically, the end-to-end distance is sufficiently large compared with the aperture sizes of the transmit/receive NULAs. Based on the derived expressions, we prove that the asymptotically optimal NULA deployment that maximizes the achievable EMG should follow the groupwise Fekete-point distribution. Specifically, the antennas should be physically grouped into K separate ULAs with the minimum feasible antenna spacing within each ULA, where K is the target EMG to be achieved; in addition, the centers of these K ULAs follow the Fekete-point distribution. We numerically verify the asymptotic optimality of such an NULA deployment and extend it to a groupwise projected arch-type NULA deployment, which provides a more practical option for mmWave LoS MIMO systems with realistic nonasymptotic configurations. Numerical examples are provided to demonstrate a significant capacity gain of the optimized NULAs over traditional ULAs.
机译:在本文中,我们研究了毫米波(mmWave)视线(LoS)多输入多输出(MIMO)通道的非均匀线性天线阵列(NULA)的优化。我们的重点是通过优化发射/接收NULA中的各个天线位置来最大化系统有效多路复用增益(EMG)。此处,EMG定义为通道以有限的信噪比实际支持的信号流的数量。当端到端距离与发射/接收NULA的孔径相比足够大时,我们首先导出具有任意部署的NULA的渐近通道特征值的解析表达式。基于派生的表达式,我们证明使可实现的EMG最大化的渐近最优NULA部署应遵循分组Fekete点分布。具体来说,应将天线物理分组为K个独立的ULA,每个ULA中的天线间距应尽可能小,其中K是要实现的目标EMG;此外,这些K ULAs的中心遵循Fekete点分布。我们在数值上验证了这种NULA部署的渐近最优性,并将其扩展到按组投影的弓型NULA部署,这为具有实际非渐近配置的mmWave LoS MIMO系统提供了更实用的选择。提供了数值示例,以证明优化的NULA比传统的ULA具有显着的容量增加。

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