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Robust MISO downlink: An efficient algorithm for improved beamforming directions

机译:鲁棒的MISO下行链路:一种有效的算法,用于改善波束成形方向

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The design of a set of beamformers for the multiple-input single-output (MISO) downlink that provides the scheduled users with the quality-of-service (QoS) level that they requested can be quite sensitive to the accuracy of the channel state information (CSI) that is available at the base station. To mitigate that sensitivity, models for the uncertainty in the CSI can be incorporated in the design formulation, but the resulting optimization problems are typically difficult to solve. A recently developed low-complexity algorithm for the power loading problem, in which the beamforming directions are pre-defined, has demonstrated good performance in numerical experiments. In this paper the reasons that underlie that good performance are examined. Then, using insights from that analysis, a computationally-efficient algorithm for jointly designing the beamforming directions and the power loading is developed. The resulting beamformers provide a significant reduction in the outage probability, and a hybrid of the two algorithms provides even further reduction.
机译:为多输入单输出(MISO)下行链路设计一套波束成形器,可以为调度的用户提供他们要求的服务质量(QoS)级别,这可能对信道状态信息的准确性非常敏感。 (CSI)在基站上可用。为了减轻这种敏感性,可以将CSI不确定性模型纳入设计公式,但是通常很难解决所产生的优化问题。最近开发的针对功率负载问题的低复杂度算法(其中预先定义了波束形成方向)已在数值实验中证明了良好的性能。在本文中,对表现出良好性能的原因进行了研究。然后,利用来自该分析的见解,开发了一种用于联合设计波束形成方向和功率负载的高效计算算法。最终的波束形成器可显着降低中断概率,而两种算法的混合甚至可以进一步降低。

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