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New Beamforming Designs for Joint Spatial Division and Multiplexing in Large-Scale MISO Multi-User Systems

机译:大型MISO多用户系统中用于联合空间划分和复用的新波束成形设计

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In this paper, we study a joint spatial division multiplexing (JSDM) beamforming scheme, which enables large-scale spatial multiplexing gains for massive multi-input multi-output downlink systems. In contrast to the conventional JSDM, which employs a block diagonalization method as a pre-beamformer, we aim to maximize sum-rate by applying minimum-mean-squared error (MMSE) approaches when designing a pre-beamformer and a multi-user precoder sequentially. First, to suppress inter-group interference, we design the pre-beamformer, which minimizes an upper bound of the sum mean-squared-error in the large-scale array regime. Then, to mitigate same-group interference, we present the multi-user precoder based on the weighted MMSE (WMMSE) optimization method, which requires the same channel state information overhead as the conventional JSDM. Also, in order to reduce the computational complexity, we compute deterministic equivalents of the WMMSE beamforming parameters to generate the beamformers by employing asymptotic results of large system analysis. Through simulation results, we confirm that the proposed two-step beamforming methods bring substantial performance gains in terms of sum-rate over the conventional JSDM schemes especially in a low and medium signal-to-noise ratio regime with comparable complexity.
机译:在本文中,我们研究了一种联合空分复用(JSDM)波束成形方案,该方案可为大规模多输入多输出下行链路系统提供大规模的空间复用增益。与采用块对角化方法作为预波束形成器的常规JSDM相比,我们的目标是在设计预波束形成器和多用户预编码器时通过应用最小均方误差(MMSE)方法来最大化总和率按顺序。首先,为了抑制组间干扰,我们设计了预波束形成器,该波束形成器在大规模阵列方案中将总均方误差的上限最小化。然后,为了减轻同组干扰,我们提出了一种基于加权MMSE(WMMSE)优化方法的多用户预编码器,该方法需要与常规JSDM相同的信道状态信息开销。此外,为了降低计算复杂度,我们通过使用大型系统分析的渐近结果,计算WMMSE波束成形参数的确定性等价物以生成波束成形器。通过仿真结果,我们确认,所提出的两步波束成形方法在总和率方面比常规JSDM方案带来了可观的性能提升,尤其是在具有相当复杂性的中低信噪比条件下。

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