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Computationally Efficient Robust Beamforming for SINR Balancing in Multicell Downlink With Applications to Large Antenna Array Systems

机译:计算有效的鲁棒波束成形,可在多小区下行链路中实现SINR平衡,并应用于大型天线阵列系统

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摘要

We address the problem of the downlink beamformer design for signal-to-interference-plus-noise ratio balancing in a multiuser multicell environment with imperfectly estimated channels at base stations. We first present a semidefinite program (SDP)-based approximate solution to the problem. Then, as our main contribution, by exploiting some properties of the robust counterpart of the optimization problem, we arrive at a second-order cone program (SOCP)-based approximation of the balancing problem. The advantages of the proposed SOCP-based design are twofold. First, it greatly reduces the computational complexity compared to the SDP-based method. Second, it applies to a wide range of uncertainty models. As a case study, we investigate the performance of proposed formulations when the base station is equipped with a massive antenna array. Numerical experiments are carried out to confirm that the proposed robust designs achieve favorable results in scenarios of practical interest.
机译:我们解决了在基站用户信道估计不完善的情况下,在多用户多小区环境中实现信号与干扰加噪声比平衡的下行链路波束形成器设计的问题。我们首先提出一个基于半定程序(SDP)的近似解决方案。然后,作为我们的主要贡献,通过利用优化问题的鲁棒对应项的某些属性,我们得出了基于二阶锥规划(SOCP)的平衡问题的近似值。所提出的基于SOCP的设计的优点是双重的。首先,与基于SDP的方法相比,它大大降低了计算复杂度。其次,它适用于各种不确定性模型。作为案例研究,当基站配备大型天线阵列时,我们将研究拟议配方的性能。进行了数值实验,以确认所提出的鲁棒设计在实际应用中取得了令人满意的结果。

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