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首页> 外文期刊>IEEE Transactions on Signal Processing >Beamspace Precoding and Beam Selection for Wideband Millimeter-Wave MIMO Relying on Lens Antenna Arrays
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Beamspace Precoding and Beam Selection for Wideband Millimeter-Wave MIMO Relying on Lens Antenna Arrays

机译:依靠透镜天线阵列的宽带毫米波MIMO的波束空间预编码和波束选择

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Millimeter-wave (mmWave) multiple-input multiple-out (MIMO) systems relying on lens antenna arrays are capable of achieving a high antenna-gain at a considerably reduced number of radio frequency (RF) chains via beam selection. However, the traditional beam selection network suffers from significant performance loss in wideband systems due to the effect of beam squint. In this paper, we propose a phase shifter-aided beam selection network, which enables a single RF chain to support multiple focused-energy beams, for mitigating the beam squint in wideband mmWave MIMO systems. Based on this architecture, we additionally design an efficient transmit precoder (TPC) for maximizing the achievable sum-rate, which is composed of beam selection and beamspace precoding. Specifically, we decouple the design problems of beamspace precoding and beam selection by exploiting the fact that the beam selection matrix has a limited number of candidates. For the beamspace precoding design, we propose a successive interference cancellation (SIC)-based method, which decomposes the associated optimization problem into a series of subproblems and solves them successively. For the beam selection design, we propose an energy-max beam selection method for avoiding the high complexity of exhaustive search, and derive the number of required beams for striking an attractive trade-off between the hardware cost and system performance. Our simulation results show that the proposed beamspace precoding and beam selection methods achieve both a higher sum-rate and a higher energy efficiency than its conventional counterparts.
机译:依靠透镜天线阵列的毫米波(mmWave)多输入多出(MIMO)系统能够通过波束选择,以相当数量减少的射频(RF)链实现高天线增益。然而,由于波束斜视的影响,传统的波束选择网络在宽带系统中遭受明显的性能损失。在本文中,我们提出了一种移相器辅助的波束选择网络,该网络可使单个RF链支持多个聚焦能量波束,以减轻宽带mmWave MIMO系统中的斜视。基于此架构,我们还设计了一种高效的传输预编码器(TPC),用于最大化可实现的总速率,该预编码器由波束选择和波束空间预编码组成。具体来说,我们利用波束选择矩阵具有有限数量的候选这一事实来解耦波束空间预编码和波束选择的设计问题。对于波束空间预编码设计,我们提出了一种基于连续干扰消除(SIC)的方法,该方法将相关的优化问题分解为一系列子问题,并相继解决。对于波束选择设计,我们提出了一种能量最大的波束选择方法,以避免穷举搜索的高复杂性,并得出所需的波束数量,以在硬件成本和系统性能之间达成有吸引力的折衷。我们的仿真结果表明,所提出的波束空间预编码和波束选择方法与常规方法相比,实现了更高的总和率和更高的能源效率。

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